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38 Commits
Author SHA1 Message Date
korenkonder 797d0f9467 Release v0.5.0.0
`MotHead`: Fixed names for some Types. Be careful! JSONs generated by versions prior to this one may be incompatible!
Updated libdeflate to 1.24
2025-06-20 11:00:18 +03:00
korenkonder 8b46fbbe03 Release v0.4.11.0
`A3DA`: Added support for Raw Data Binary
`Aet`: Complete overhaul of AET writer
`FARC`: Fixed compressed files not having correct size and encrypted files not being encrypted
Updated libdeflate to 1.20
2024-05-11 13:00:07 +03:00
korenkonder b66b3b01d0 Release v0.4.10.19 2023-11-21 23:58:18 +03:00
korenkonder 3c13856667 Release v0.4.10.18
Fixed incorrect reading of `byte` and `short` in `JSON`
2023-07-04 05:32:14 +03:00
korenkonder 00d25ff67b Release v0.4.10.17
JSON
2023-06-03 23:57:42 +03:00
korenkonder a1c18941a1 Patch for release v0.4.10.16 2023-05-29 22:53:10 +03:00
korenkonder c95a116297 Release v0.4.10.16
JSON
2023-05-29 12:49:13 +03:00
korenkonder 139fbf307f Release v0.4.10.15
MotHead
2023-05-18 18:06:08 +03:00
korenkonder 1d5c88f39f Release v0.4.10.14
A3DA
2022-08-11 00:07:13 +03:00
korenkonder 786dca23fd Release v0.4.10.13
A3DA
2022-05-30 22:28:33 +03:00
korenkonder 7046e3cfc2 Release v0.4.10.12
A3DA, MotHead
2022-05-12 10:43:46 +03:00
korenkonder ec5f8c803e Release v0.4.10.11
A3DA, DIVAFILE, MotHead
2022-03-10 21:29:09 +03:00
korenkonder 310d637072 Release v0.4.10.10
DEX, MotHead
2022-01-13 14:44:23 +03:00
korenkonder 4d05f6a878 Release v0.4.10.9
A3DA
2021-12-22 16:37:31 +03:00
korenkonder 35d7712d8f Release v0.4.10.8
A3DA, MotHead
2021-11-09 14:34:27 +03:00
korenkonder df92e13d2c Release v0.4.10.7
A3DA, AuthDB
2021-10-03 18:32:46 +03:00
korenkonder 803f64e333 Release v0.4.10.6
A3DA
2021-09-26 19:16:56 +03:00
korenkonder a7e14e22ad Release v0.4.10.5
A3DA
2021-09-17 21:00:31 +03:00
korenkonder d94f45870d Release v0.4.10.4
A3DA
2021-05-26 22:43:16 +03:00
korenkonder 2b46e0f4bd Release v0.4.10.3
A3DA
2021-05-24 04:02:18 +03:00
korenkonder f1547f78b2 Release v0.4.10.2.1
A3DA
2021-05-23 21:11:34 +03:00
korenkonder 6c35326dda v0.4.10.2
A3DA
2021-05-22 14:13:54 +03:00
korenkonder 30a51f6bc4 Release v0.4.10.1
A3DA
2021-04-30 03:10:49 +03:00
korenkonder 54af060c13 Release v0.4.10.0
A3DA, AET, FARC
2021-04-29 07:41:23 +03:00
korenkonder 84fd22b548 Release v0.4.9.11
A3DA, Light
2021-03-11 08:59:44 +03:00
korenkonder 798b055756 Update DataBank.cs 2021-01-03 08:42:54 +03:00
korenkonder 30de413922 Release v0.4.9.10
A3DA, Bloom, Color Correction DataBank, DOF, Light
2021-01-03 06:22:48 +03:00
korenkonder 85a22ea0f7 Release v0.4.9.9
A3DA, Bloom, Color Correction, DOF, Light, MotHead
2020-11-19 23:22:25 +03:00
korenkonder 99bb4e3571 Release v0.4.9.8.1 (Hotfix)
Library fixes
2020-09-16 05:40:23 +03:00
korenkonder 036863a5a6 Update README.md 2020-09-16 04:11:30 +03:00
korenkonder b6017d1d70 Release v0.4.9.8
A3DA, Bloom, Color Correction, DOF, Light
2020-09-16 04:07:06 +03:00
korenkonder 5de5d23e94 Release 0.4.9.7
Library fixes
2020-08-21 02:33:45 +03:00
korenkonder df0cb255fc Release v0.4.9.6
DEX
2020-08-13 06:57:46 +03:00
korenkonder 89c9afd0c5 Release v0.4.9.5
A3DA, DataBank, STR
2020-08-09 03:37:23 +03:00
korenkonder cd2eab5b8e Release v0.4.9.4.2 (Hotfix)
STR
2020-06-19 19:09:36 +03:00
korenkonder 8dd10b2fa4 Release v0.4.9.4.1 (Hotfix)
STR
2020-06-19 18:57:04 +03:00
korenkonder 35dee99307 Release v0.4.9.4
A3DA, DEX, STR
2020-06-19 14:09:15 +03:00
korenkonder b49b86887e Release v0.4.9.3.2 (Hotfix)
CLI, Tables
2020-06-03 01:45:36 +03:00
82 changed files with 9487 additions and 6049 deletions
+32 -7
View File
@@ -11,16 +11,41 @@ namespace KKdBaseLib
public EPType EPTypePost;
public float FrameDelta;
public float ValueDelta;
public int Unk1C;
public int Unk20;
public int Unk24;
public int Unk28;
public int Unk2C;
public int Unk30;
public int Unk34;
public int Padding;
public long FirstKey;
public long SecondKey;
public long AfterLastKey;
public long Length;
public long DataOffset; //Used only in-game and points to KFT3 Array
public KFT3[] Keys;
public A3DAKey(Key k)
{
Type = 0; Value = MaxFrames = FrameDelta = ValueDelta = 0; EPTypePre = EPTypePost = 0;
FirstKey = SecondKey = AfterLastKey = Padding = 0;
Length = DataOffset = 0; Keys = null;
MaxFrames = k.Max ?? 0;
if (k.Type > KeyType.Static && k.Keys != null && k.Keys.Length > 1)
{
Type = k.Type;
Length = k.Keys.Length;
Keys = k.Keys;
EPTypePost = k.EPTypePost;
EPTypePre = k.EPTypePre;
FrameDelta = k.Keys[Length - 1].F - k.Keys[0].F;
ValueDelta = k.Keys[Length - 1].V - k.Keys[0].V;
}
else
{
Type = k.Type;
Value = k.Type > 0 ? k.Value : 0.0f;
EPTypePost = 0;
EPTypePre = 0;
FrameDelta = 0;
ValueDelta = Value;
}
}
}
}
+20 -3
View File
@@ -16,12 +16,29 @@ namespace KKdBaseLib.Auth2D
public uint BackColor;
public uint Width;
public uint Height;
public Pointer<Vec2<CountPointer<KFT2>>> Camera;
public Pointer<Camera> Camera;
public CountPointer<Composition> Composition;
public CountPointer<Video > Video;
public CountPointer<Audio > Audio;
}
public struct Camera
{
public CountPointer<KFT2> EyeX;
public CountPointer<KFT2> EyeY;
public CountPointer<KFT2> EyeZ;
public CountPointer<KFT2> PositionX;
public CountPointer<KFT2> PositionY;
public CountPointer<KFT2> PositionZ;
public CountPointer<KFT2> DirectionX;
public CountPointer<KFT2> DirectionY;
public CountPointer<KFT2> DirectionZ;
public CountPointer<KFT2> RotationX;
public CountPointer<KFT2> RotationY;
public CountPointer<KFT2> RotationZ;
public CountPointer<KFT2> Zoom ;
}
public struct Composition
{
public int P;
@@ -213,12 +230,12 @@ namespace KKdBaseLib.Auth2D
public CountPointer<Identifier> Identifiers;
public override string ToString() => $"Width: {Width}; Height: {Height}; Color: {Color:X2)}";
public struct Identifier
{
public Pointer<string> Name;
public uint ID;
public override string ToString() => $"ID: {ID}; Name: {Name}";
}
}
+128 -134
View File
@@ -2,6 +2,7 @@ namespace KKdBaseLib.Auth3D
{
public struct Data
{
public string[] Auth2D;
public string[] Motion;
public string[] ObjectList;
public string[] ObjectHRCList;
@@ -9,9 +10,11 @@ namespace KKdBaseLib.Auth3D
public _ _;
public DOF? DOF;
public Fog[] Fog;
public Chara[] Chara;
public Curve[] Curve;
public Event[] Event;
public Light[] Light;
public Point[] Point;
public Object[] Object;
public Ambient[] Ambient;
public ObjectHRC[] ObjectHRC;
@@ -20,8 +23,6 @@ namespace KKdBaseLib.Auth3D
public PlayControl PlayControl;
public PostProcess? PostProcess;
public MaterialList[] MaterialList;
public ModelTransform[] Chara;
public ModelTransform[] Point;
public CameraAuxiliary? CameraAuxiliary;
}
@@ -36,17 +37,18 @@ namespace KKdBaseLib.Auth3D
public struct Ambient
{
public string Name;
public Vec4<Key> LightDiffuse;
public Vec4<Key> RimLightDiffuse;
public Vec4<Key?>? LightDiffuse;
public Vec4<Key?>? RimLightDiffuse;
}
public struct CameraAuxiliary
{
public Key Gamma;
public Key Exposure;
public Key Saturate;
public Key GammaRate;
public Key AutoExposure;
public Key? Gamma;
public Key? Exposure;
public Key? Saturate;
public Key? GammaRate;
public Key? ExposureRate;
public Key? AutoExposure;
}
public struct CameraRoot
@@ -57,17 +59,23 @@ namespace KKdBaseLib.Auth3D
public struct ViewPoint
{
public bool FOVHorizontal;
public float? Aspect;
public float? CameraApertureH;
public float? CameraApertureW;
public Key FOV;
public Key Roll;
public Key FocalLength;
public bool FOVIsHorizontal;
public float Aspect;
public float CameraApertureH;
public float CameraApertureW;
public Key? FocalLength;
public Key? FOV;
public Key? Roll;
public ModelTransform MT;
}
}
public struct Chara
{
public ModelTransform MT;
public string Name;
}
public struct Curve
{
public string Name;
@@ -76,18 +84,17 @@ namespace KKdBaseLib.Auth3D
public struct DOF
{
public string Name;
public ModelTransform MT;
}
public struct Event
{
public int? Type;
public float? End;
public float? Begin;
public float? ClipEnd;
public float? ClipBegin;
public float? TimeRefScale;
public int Type;
public float End;
public float Begin;
public float ClipEnd;
public float ClipBegin;
public float TimeRefScale;
public string Name;
public string Param1;
public string Ref;
@@ -95,118 +102,93 @@ namespace KKdBaseLib.Auth3D
public struct Fog
{
public int? Id;
public Key End;
public Key Start;
public Key Density;
public Vec4<Key> Diffuse;
public int Id;
public Key? End;
public Key? Start;
public Key? Density;
public Vec4<Key?>? Color;
}
public enum CompressF16 : int
{
F32F32F32F32 = 0,
I16F16F32F32 = 1,
I16F16F16F16 = 2,
Type0 = 0,
Type1 = 1,
Type2 = 2,
}
public enum EPType : int
public enum EPType : int // Pre/Post Infinity
{
EP_1 = 1,
EP_2 = 2,
EP_3 = 3,
None = 0,
Linear = 1,
Cycle = 2,
CycleOffset = 3,
}
public enum KeyType : int
{
Null = 0,
Value = 1,
Lerp = 2,
None = 0,
Static = 1,
Linear = 2,
Hermite = 3,
Hold = 4,
}
public struct Key
{
public KeyType? Type;
public int Length;
public KeyType Type;
public int? BinOffset;
public EPType EPTypePre;
public EPType EPTypePost;
public float? Max;
public float? Value;
public RawD RawData;
public float Value;
public bool RawData;
public bool RawDataBinary;
public int? RawDataValueListSize;
public int? RawDataValueListOffset;
public KFT3[] Keys;
public struct RawD
public Key(A3DAKey k)
{
public int KeyType;
public int ValueListSize;
public string ValueType;
public string[] ValueList;
}
Type = 0;
Value = 0;
BinOffset = null;
RawData = default;
RawDataBinary = default;
RawDataValueListSize = null;
RawDataValueListOffset = null;
Keys = null;
public static Vec3<A3DAKey> ToA3DAKey(Vec3< Key> k) =>
new Vec3<A3DAKey> { X = (A3DAKey)k.X, Y = (A3DAKey)k.Y, Z = (A3DAKey)k.Z };
public static Vec3< Key> ToKey (Vec3<A3DAKey> k) =>
new Vec3< Key> { X = ( Key)k.X, Y = ( Key)k.Y, Z = ( Key)k.Z };
public static explicit operator Key(A3DAKey k)
{
Key key = default;
key.EPTypePost = k.EPTypePost;
key.EPTypePre = k.EPTypePre;
key.Max = k.MaxFrames;
EPTypePost = k.EPTypePost;
EPTypePre = k.EPTypePre;
Max = k.MaxFrames;
if (k.Length > 1)
{
key.Type = k.Type;
key.Length = (int)k.Length;
key.Keys = k.Keys;
Type = k.Type;
Keys = k.Keys;
}
else if (k.Length == 1)
{
key.Type = KeyType.Value;
key.Value = k.Keys[0].V;
Type = KeyType.Static;
Value = k.Keys[0].V;
}
return key;
}
public static explicit operator A3DAKey(Key k)
{
A3DAKey key = default;
key.EPTypePost = k.EPTypePost;
key.EPTypePre = k.EPTypePre;
key.MaxFrames = k.Max ?? 0;
if (k.Type != null && k.Length > 1)
{
key.Type = k.Type.Value;
key.Length = k.Length;
key.Keys = k.Keys;
key.FrameDelta = k.Keys[k.Length - 1].F - k.Keys[0].F;
key.ValueDelta = k.Keys[k.Length - 1].V - k.Keys[0].V;
}
else
{
key.Type = 0;
key.Value = 0.0f;
if (k.Type.HasValue && k.Value.HasValue)
{
key.Type = k.Type.Value;
key.Value = k.Value.Value;
}
}
return key;
}
}
public struct Light
{
public int? Id;
public string Name;
public int Id;
public string Type;
public Vec4<Key> Ambient;
public Vec4<Key> Diffuse;
public Vec4<Key> Specular;
public Vec4<Key> Incandescence;
public Key? ConeAngle;
public Key? Constant;
public Key? DropOff;
public Key? Far;
public Key? Intensity;
public Key? Linear;
public Key? Quadratic;
public Vec4<Key?>? Ambient;
public Vec4<Key?>? Diffuse;
public Vec4<Key?>? Specular;
public Vec4<Key?>? ToneCurve;
public ModelTransform Position;
public ModelTransform SpotDirection;
}
@@ -214,23 +196,21 @@ namespace KKdBaseLib.Auth3D
public struct MaterialList
{
public string Name;
public string HashName;
public Key GlowIntensity;
public Vec4<Key> BlendColor;
public Vec4<Key> Incandescence;
public Key? GlowIntensity;
public Vec4<Key?>? BlendColor;
public Vec4<Key?>? Incandescence;
}
public struct MObjectHRC
{
public string Name;
public Node[] Node;
public Vec3<float?> JointOrient;
public ObjectNode[] Node;
public Instance[] Instances;
public ModelTransform MT;
public struct Instance
{
public int? Shadow;
public bool Shadow;
public string Name;
public string UIDName;
public ModelTransform MT;
@@ -239,7 +219,6 @@ namespace KKdBaseLib.Auth3D
public struct ModelTransform
{
public bool Writed;
public int? BinOffset;
public Key Visibility;
public Vec3<Key> Rot;
@@ -247,27 +226,23 @@ namespace KKdBaseLib.Auth3D
public Vec3<Key> Trans;
}
public struct Node
{
public int? Parent;
public string Name;
public ModelTransform MT;
}
public struct Object
{
public int? MorphOffset;
public float PatOffset;
public float MorphOffset;
public string Name;
public string Pat;
public string Morph;
public string UIDName;
public string ParentName;
public string ParentNode;
public ModelTransform MT;
public TexturePattern[] TexPat;
public TextureTransform[] TexTrans;
public struct TexturePattern
{
public int? PatOffset;
public float PatOffset;
public string Pat;
public string Name;
}
@@ -275,40 +250,59 @@ namespace KKdBaseLib.Auth3D
public struct TextureTransform
{
public string Name;
public Key Rotate;
public Key RotateFrame;
public Vec2<Key> Offset;
public Vec2<Key> Repeat;
public Vec2<Key> Coverage;
public Vec2<Key> TranslateFrame;
public Key? Rotate;
public Key? RotateFrame;
public Key? OffsetU;
public Key? OffsetV;
public Key? RepeatU;
public Key? RepeatV;
public Key? CoverageU;
public Key? CoverageV;
public Key? TranslateFrameU;
public Key? TranslateFrameV;
}
}
public struct ObjectHRC
{
public int? Shadow;
public bool Shadow;
public string Name;
public string UIDName;
public Node[] Node;
public Vec3<float?> JointOrient;
public string ParentName;
public string ParentNode;
public ObjectNode[] Node;
}
public struct ObjectNode
{
public Vec3? JointOrient;
public int Parent;
public string Name;
public ModelTransform MT;
}
public struct PlayControl
{
public int Begin;
public float Begin;
public int? Div;
public int FPS;
public int? Offset;
public int Size;
public float FPS;
public float? Offset;
public float Size;
}
public struct Point
{
public ModelTransform MT;
public string Name;
}
public struct PostProcess
{
public Key LensFlare;
public Key LensGhost;
public Key LensShaft;
public Vec4<Key> Ambient;
public Vec4<Key> Diffuse;
public Vec4<Key> Specular;
public Key? LensFlare;
public Key? LensGhost;
public Key? LensShaft;
public Vec4<Key?>? Intensity;
public Vec4<Key?>? Radius;
public Vec4<Key?>? SceneFade;
}
}
-99
View File
@@ -1,99 +0,0 @@
//Original research by Samyuu
namespace KKdBaseLib
{
public static class DCC //Databank Checksum Calculator
{
private static readonly ushort[] ChecksumLookupTable = {
0x0000, 0x1021, 0x2042, 0x3063, 0x4084, 0x50A5, 0x60C6, 0x70E7,
0x8108, 0x9129, 0xA14A, 0xB16B, 0xC18C, 0xD1AD, 0xE1CE, 0xF1EF,
0x1231, 0x0210, 0x3273, 0x2252, 0x52B5, 0x4294, 0x72F7, 0x62D6,
0x9339, 0x8318, 0xB37B, 0xA35A, 0xD3BD, 0xC39C, 0xF3FF, 0xE3DE,
0x2462, 0x3443, 0x0420, 0x1401, 0x64E6, 0x74C7, 0x44A4, 0x5485,
0xA56A, 0xB54B, 0x8528, 0x9509, 0xE5EE, 0xF5CF, 0xC5AC, 0xD58D,
0x3653, 0x2672, 0x1611, 0x0630, 0x76D7, 0x66F6, 0x5695, 0x46B4,
0xB75B, 0xA77A, 0x9719, 0x8738, 0xF7DF, 0xE7FE, 0xD79D, 0xC7BC,
0x48C4, 0x58E5, 0x6886, 0x78A7, 0x0840, 0x1861, 0x2802, 0x3823,
0xC9CC, 0xD9ED, 0xE98E, 0xF9AF, 0x8948, 0x9969, 0xA90A, 0xB92B,
0x5AF5, 0x4AD4, 0x7AB7, 0x6A96, 0x1A71, 0x0A50, 0x3A33, 0x2A12,
0xDBFD, 0xCBDC, 0xFBBF, 0xEB9E, 0x9B79, 0x8B58, 0xBB3B, 0xAB1A,
0x6CA6, 0x7C87, 0x4CE4, 0x5CC5, 0x2C22, 0x3C03, 0x0C60, 0x1C41,
0xEDAE, 0xFD8F, 0xCDEC, 0xDDCD, 0xAD2A, 0xBD0B, 0x8D68, 0x9D49,
0x7E97, 0x6EB6, 0x5ED5, 0x4EF4, 0x3E13, 0x2E32, 0x1E51, 0x0E70,
0xFF9F, 0xEFBE, 0xDFDD, 0xCFFC, 0xBF1B, 0xAF3A, 0x9F59, 0x8F78,
0x9188, 0x81A9, 0xB1CA, 0xA1EB, 0xD10C, 0xC12D, 0xF14E, 0xE16F,
0x1080, 0x00A1, 0x30C2, 0x20E3, 0x5004, 0x4025, 0x7046, 0x6067,
0x83B9, 0x9398, 0xA3FB, 0xB3DA, 0xC33D, 0xD31C, 0xE37F, 0xF35E,
0x02B1, 0x1290, 0x22F3, 0x32D2, 0x4235, 0x5214, 0x6277, 0x7256,
0xB5EA, 0xA5CB, 0x95A8, 0x8589, 0xF56E, 0xE54F, 0xD52C, 0xC50D,
0x34E2, 0x24C3, 0x14A0, 0x0481, 0x7466, 0x6447, 0x5424, 0x4405,
0xA7DB, 0xB7FA, 0x8799, 0x97B8, 0xE75F, 0xF77E, 0xC71D, 0xD73C,
0x26D3, 0x36F2, 0x0691, 0x16B0, 0x6657, 0x7676, 0x4615, 0x5634,
0xD94C, 0xC96D, 0xF90E, 0xE92F, 0x99C8, 0x89E9, 0xB98A, 0xA9AB,
0x5844, 0x4865, 0x7806, 0x6827, 0x18C0, 0x08E1, 0x3882, 0x28A3,
0xCB7D, 0xDB5C, 0xEB3F, 0xFB1E, 0x8BF9, 0x9BD8, 0xABBB, 0xBB9A,
0x4A75, 0x5A54, 0x6A37, 0x7A16, 0x0AF1, 0x1AD0, 0x2AB3, 0x3A92,
0xFD2E, 0xED0F, 0xDD6C, 0xCD4D, 0xBDAA, 0xAD8B, 0x9DE8, 0x8DC9,
0x7C26, 0x6C07, 0x5C64, 0x4C45, 0x3CA2, 0x2C83, 0x1CE0, 0x0CC1,
0xEF1F, 0xFF3E, 0xCF5D, 0xDF7C, 0xAF9B, 0xBFBA, 0x8FD9, 0x9FF8,
0x6E17, 0x7E36, 0x4E55, 0x5E74, 0x2E93, 0x3EB2, 0x0ED1, 0x1EF0,
};
public static ushort CalculateChecksum(byte[] data,
int offset = 0, ushort seed = 0xFFFF)
{
int length = data.Length;
ushort result = seed;
for (int i = offset; i < length; i++)
result = (ushort)(ChecksumLookupTable[(result >> 8) ^ data[i]] ^ (result << 8));
return result;
}
public static uint CalculateChecksumU32(byte[] data,
int offset = 0, uint seed = 0xFFFFFFFF)
{
int length = data.Length;
uint result = seed;
for (int i = offset; i < length; i++)
result = ChecksumLookupTable[(byte)(result >> 8) ^ data[i]] ^ (result << 8);
return result;
}
public static ulong CalculateChecksumU64(byte[] data,
int offset = 0, ulong seed = 0xFFFFFFFFFFFFFFFF)
{
int length = data.Length;
ulong result = seed;
for (int i = offset; i < length; i++)
result = ChecksumLookupTable[(byte)(result >> 8) ^ data[i]] ^ (result << 8);
return result;
}
public static unsafe ushort CalculateChecksum(byte* data,
int length, int offset = 0, ushort seed = 0xFFFF)
{
ushort result = seed;
for (int i = offset; i < length; i++)
result = (ushort)(ChecksumLookupTable[(result >> 8) ^ data[i]] ^ (result << 8));
return result;
}
public static unsafe uint CalculateChecksumU32(byte* data,
int length, int offset = 0, uint seed = 0xFFFFFFFF)
{
uint result = seed;
for (int i = offset; i < length; i++)
result = ChecksumLookupTable[(byte)(result >> 8) ^ data[i]] ^ (result << 8);
return result;
}
public static unsafe ulong CalculateChecksumU64(byte* data,
int length, int offset = 0, ulong seed = 0xFFFFFFFFFFFFFFFF)
{
ulong result = seed;
for (int i = offset; i < length; i++)
result = ChecksumLookupTable[(byte)(result >> 8) ^ data[i]] ^ (result << 8);
return result;
}
}
}
+41 -30
View File
@@ -7,7 +7,7 @@ namespace KKdBaseLib
public static double Acos (this double d ) => Math.Acos (d );
public static double Asin (this double d ) => Math.Asin (d );
public static double Atan (this double d ) => Math.Atan (d );
public static double Aсtg (this double d ) => 1 / Math.Atan (d );
public static double Actg (this double d ) => 1 / Math.Atan (d );
public static double Cos (this double d ) => Math.Cos (d );
public static double Cosh (this double val) => Math.Cosh (val);
public static double Sin (this double a ) => Math.Sin (a );
@@ -36,7 +36,7 @@ namespace KKdBaseLib
public static float Acos (this float d ) => (float) Math.Acos (d ) ;
public static float Asin (this float d ) => (float) Math.Asin (d ) ;
public static float Atan (this float d ) => (float) Math.Atan (d ) ;
public static float Aсtg (this float d ) => (float)(1 / Math.Atan (d ));
public static float Actg (this float d ) => (float)(1 / Math.Atan (d ));
public static float Cos (this float d ) => (float) Math.Cos (d ) ;
public static float Cosh (this float val) => (float) Math.Cosh (val) ;
public static float Sin (this float a ) => (float) Math.Sin (a ) ;
@@ -126,6 +126,10 @@ namespace KKdBaseLib
{ if (isBE) { for (byte i = 0; i < 8; i++) { buf[i] = (byte)le; le >>= 8; } le = 0;
for (byte i = 0; i < 8; i++) { le |= buf[i]; if (i < 7) le <<= 8; } } return le; }
public static sbyte TI8(this byte[] arr, int offset = 0)
{ sbyte val; fixed (byte* ptr = arr) val = *( sbyte*)(ptr + offset); return val; }
public static byte TU8(this byte[] arr, int offset = 0)
{ byte val; fixed (byte* ptr = arr) val = *( byte*)(ptr + offset); return val; }
public static short TI16(this byte[] arr, int offset = 0)
{ short val; fixed (byte* ptr = arr) val = *( short*)(ptr + offset); return val; }
public static ushort TU16(this byte[] arr, int offset = 0)
@@ -159,32 +163,36 @@ namespace KKdBaseLib
public static Quat TQ (this byte[] arr, int offset = 0)
{ Quat val; fixed (byte* ptr = arr) val = *( Quat*)(ptr + offset); return val; }
public static void GBy(this byte[] arr, short val)
{ fixed (byte* ptr = arr) *( short*)ptr = val; }
public static void GBy(this byte[] arr, ushort val)
{ fixed (byte* ptr = arr) *(ushort*)ptr = val; }
public static void GBy(this byte[] arr, int val)
{ fixed (byte* ptr = arr) *( int*)ptr = val; }
public static void GBy(this byte[] arr, uint val)
{ fixed (byte* ptr = arr) *( uint*)ptr = val; }
public static void GBy(this byte[] arr, long val)
{ fixed (byte* ptr = arr) *( long*)ptr = val; }
public static void GBy(this byte[] arr, ulong val)
{ fixed (byte* ptr = arr) *( ulong*)ptr = val; }
public static void GBy(this byte[] arr, Half val)
{ fixed (byte* ptr = arr) *( Half*)ptr = val; }
public static void GBy(this byte[] arr, float val)
{ fixed (byte* ptr = arr) *( float*)ptr = val; }
public static void GBy(this byte[] arr, double val)
{ fixed (byte* ptr = arr) *(double*)ptr = val; }
public static void GBy(this byte[] arr, Vec2 val)
{ fixed (byte* ptr = arr) *( Vec2*)ptr = val; }
public static void GBy(this byte[] arr, Vec3 val)
{ fixed (byte* ptr = arr) *( Vec3*)ptr = val; }
public static void GBy(this byte[] arr, Vec4 val)
{ fixed (byte* ptr = arr) *( Vec4*)ptr = val; }
public static void GBy(this byte[] arr, Quat val)
{ fixed (byte* ptr = arr) *( Quat*)ptr = val; }
public static void GBy(this byte[] arr, sbyte val, int offset = 0)
{ fixed (byte* ptr = arr) *( sbyte*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, byte val, int offset = 0)
{ fixed (byte* ptr = arr) *( byte*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, short val, int offset = 0)
{ fixed (byte* ptr = arr) *( short*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, ushort val, int offset = 0)
{ fixed (byte* ptr = arr) *(ushort*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, int val, int offset = 0)
{ fixed (byte* ptr = arr) *( int*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, uint val, int offset = 0)
{ fixed (byte* ptr = arr) *( uint*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, long val, int offset = 0)
{ fixed (byte* ptr = arr) *( long*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, ulong val, int offset = 0)
{ fixed (byte* ptr = arr) *( ulong*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, Half val, int offset = 0)
{ fixed (byte* ptr = arr) *( Half*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, float val, int offset = 0)
{ fixed (byte* ptr = arr) *( float*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, double val, int offset = 0)
{ fixed (byte* ptr = arr) *(double*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, Vec2 val, int offset = 0)
{ fixed (byte* ptr = arr) *( Vec2*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, Vec3 val, int offset = 0)
{ fixed (byte* ptr = arr) *( Vec3*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, Vec4 val, int offset = 0)
{ fixed (byte* ptr = arr) *( Vec4*)(ptr + offset) = val; }
public static void GBy(this byte[] arr, Quat val, int offset = 0)
{ fixed (byte* ptr = arr) *( Quat*)(ptr + offset) = val; }
public static sbyte CITSB(this int c)
{ return ( sbyte)(c > 0x0000007F ?
@@ -239,7 +247,10 @@ namespace KKdBaseLib
public static double ToF64(this long i) => *(double*)&i;
public static double ToF64(this ulong i) => *(double*)&i;
public static string ToString(this int d, bool BE) =>
public static string ToS(this int d, bool BE) =>
BitConverter.GetBytes(d.E(BE)).ToASCII();
public static string ToS(this uint d, bool BE) =>
BitConverter.GetBytes(d.E(BE)).ToASCII();
public static string ToS(this object d)
@@ -273,7 +284,7 @@ namespace KKdBaseLib
public static string ToS(this ulong? d) => (d ?? default).ToString();
public static string ToS(this ulong d) => d.ToString();
public static string ToS(this float? d, int round) => (d ?? default).ToS(round);
public static string ToS(this float? d) => (d ?? default).ToS();
public static string ToS(this float? d) => (d ?? default).ToS(15);
public static string ToS(this float d, int round)
{ string s = (d.ToU32() & 0x80000000) != 0 ? "-" : ""; d = (d.ToU32() & 0x7FFFFFFF).ToF32();
return s + Math.Round(d, round).ToString().ToLower().Replace(NDS, "."); }
+95 -81
View File
@@ -24,12 +24,10 @@ namespace KKdBaseLib.F2
for (i = 0; i < ENRSCount; i++)
{
enrsEntry = default;
enrsEntry.Offset = ReadENRSValue(ref localPtr);
enrsEntry.Count = ReadENRSValue(ref localPtr);
enrsEntry.Size = ReadENRSValue(ref localPtr);
enrsEntry.Repeat = ReadENRSValue(ref localPtr);
if (i > 0) enrsEntry.Offset += Array[i - 1].Offset;
if (ReadENRSValue(ref localPtr, out enrsEntry.Offset)) return;
if (ReadENRSValue(ref localPtr, out enrsEntry.Count )) return;
if (ReadENRSValue(ref localPtr, out enrsEntry.Size )) return;
if (ReadENRSValue(ref localPtr, out enrsEntry.Repeat)) return;
if (enrsEntry.Repeat < 1) { enrsEntry.Sub = null; Array[i] = enrsEntry; continue; }
@@ -37,9 +35,8 @@ namespace KKdBaseLib.F2
for (i0 = 0; i0 < enrsEntry.Count; i0++)
{
sub = default;
sub.Skip = ReadENRSValue(ref localPtr, out sub.Type);
sub.Reverse = ReadENRSValue(ref localPtr);
if (i0 > 0) sub.Skip += enrsEntry.Sub[i0 - 1].SizeSkip;
if (ReadENRSValue(ref localPtr, out sub.Skip, out sub.Type)) return;
if (ReadENRSValue(ref localPtr, out sub.Reverse )) return;
enrsEntry.Sub[i0] = sub;
if (enrsEntry.Sub[i0].Type == ENRSEntry.Type.Invalid) { Array = null; return; }
@@ -65,41 +62,41 @@ namespace KKdBaseLib.F2
for (i = 0; i < Array.Length; i++)
{
ENRSEntry enrsEntry = Array[i];
WriteENRSValue(ref localPtr, i > 0 ? enrsEntry.Offset -
Array[i - 1].Offset : enrsEntry.Offset);
WriteENRSValue(ref localPtr, enrsEntry.Count > enrsEntry.Sub.Length ?
enrsEntry.Sub.Length : enrsEntry.Count);
WriteENRSValue(ref localPtr, enrsEntry.Size );
WriteENRSValue(ref localPtr, enrsEntry.Repeat);
if (WriteENRSValue(ref localPtr, enrsEntry.Offset)) goto End;
if (WriteENRSValue(ref localPtr, enrsEntry.Count )) goto End;
if (WriteENRSValue(ref localPtr, enrsEntry.Size )) goto End;
if (WriteENRSValue(ref localPtr, enrsEntry.Repeat)) goto End;
if (enrsEntry.Repeat < 1) continue;
for (i0 = 0; i0 < enrsEntry.Count && i0 < enrsEntry.Sub.Length; i0++)
{
if (enrsEntry.Sub[i0].Type < ENRSEntry.Type. WORD ||
enrsEntry.Sub[i0].Type > ENRSEntry.Type.QWORD)
if (enrsEntry.Sub[i0].Type > ENRSEntry.Type.QWORD)
return data;
WriteENRSValue(ref localPtr, i0 > 0 ? enrsEntry.Sub[i0].Skip -
enrsEntry.Sub[i0 - 1].SizeSkip : enrsEntry.Sub[i0].Skip, enrsEntry.Sub[i0].Type);
WriteENRSValue(ref localPtr, enrsEntry.Sub[i0].Reverse);
if (WriteENRSValue(ref localPtr, enrsEntry.Sub[i0].Skip, enrsEntry.Sub[i0].Type)) goto End;
if (WriteENRSValue(ref localPtr, enrsEntry.Sub[i0].Reverse )) goto End;
}
}
}
End:
return data;
}
private int length()
{
if (Array == null)
return 0;
int i, i0;
int length = 0x10;
for (i = 0; i < Array.Length; i++)
{
ENRSEntry enrs = Array[i];
length += GetSize(i > 0 ? enrs.Offset - Array[i - 1].Offset : enrs.Offset);
length += GetSize(enrs.Count );
length += GetSize(enrs.Size );
length += GetSize(enrs.Repeat);
if (GetSize(enrs.Offset, ref length)) goto End;
if (GetSize(enrs.Count , ref length)) goto End;
if (GetSize(enrs.Size , ref length)) goto End;
if (GetSize(enrs.Repeat, ref length)) goto End;
if (enrs.Repeat < 1) continue;
@@ -108,15 +105,24 @@ namespace KKdBaseLib.F2
if (enrs.Sub[i0].Type < ENRSEntry.Type. WORD ||
enrs.Sub[i0].Type > ENRSEntry.Type.QWORD) return length.A(0x10);
length += GetSizeType(i0 > 0 ? enrs.Sub[i0].Skip -
enrs.Sub[i0 - 1].SizeSkip : enrs.Sub[i0].Skip);
length += GetSize(enrs.Sub[i0].Reverse);
if (GetSizeType(enrs.Sub[i0].Skip , ref length)) goto End;
if (GetSize (enrs.Sub[i0].Reverse, ref length)) goto End;
}
}
End:
return length.A(0x10);
static int GetSizeType(int val) => val < 0x00000010 ? 1 : val < 0x00001000 ? 2 : 4;
static int GetSize (int val) => val < 0x00000040 ? 1 : val < 0x00004000 ? 2 : 4;
static bool GetSizeType(int val, ref int length)
{
length += val < 0x00000010 ? 1 : val < 0x00001000 ? 2 : val < 0x10000000 ? 4 : 1;
return val >= 0x10000000;
}
static bool GetSize (int val, ref int length)
{
length += val < 0x00000040 ? 1 : val < 0x00004000 ? 2 : val < 0x40000000 ? 4 : 1;
return val >= 0x40000000;
}
}
/*private static KKdList<ENRS.SubENRS> Optimize(KKdList<ENRS.SubENRS> Sub)
@@ -138,73 +144,76 @@ namespace KKdBaseLib.F2
[System.ThreadStatic] private static ENRSEntry.Value value;
private unsafe static int ReadENRSValue(ref byte* ptr, out ENRSEntry.Type type)
private unsafe static bool ReadENRSValue(ref byte* ptr, out int v, out ENRSEntry.Type type)
{
int V = *ptr & 0xF;
v = *ptr & 0xF;
type = (ENRSEntry. Type)((*ptr & 0x30) >> 4);
value = (ENRSEntry.Value)((*ptr & 0xC0) >> 6);
ptr++;
if (value == ENRSEntry.Value.Int32 )
{ V = (V << 24) | (ptr[0] << 16) | (ptr[1] << 8) | ptr[2]; ptr += 3; }
else if (value == ENRSEntry.Value.Int16 )
{ V = (V << 8) | ptr[0]; ptr += 1; }
else if (value == ENRSEntry.Value.Invalid) V = 0;
return V;
if (value == ENRSEntry.Value.Int32 ) v = (((((v << 8) | *ptr++) << 8) | *ptr++) << 8) | *ptr++;
else if (value == ENRSEntry.Value.Int16 ) v = (v << 8) | *ptr++;
else if (value == ENRSEntry.Value.Invalid) { v = 0; return true; }
return false;
}
private unsafe static int ReadENRSValue(ref byte* ptr)
private unsafe static bool ReadENRSValue(ref byte* ptr, out int v)
{
int V = *ptr & 0x3F;
v = *ptr & 0x3F;
value = (ENRSEntry.Value)((*ptr & 0xC0) >> 6);
ptr++;
if (value == ENRSEntry.Value.Int32 )
{ V = (V << 24) | (ptr[0] << 16) | (ptr[1] << 8) | ptr[2]; ptr += 3; }
else if (value == ENRSEntry.Value.Int16 )
{ V = (V << 8) | ptr[0]; ptr += 1; }
else if (value == ENRSEntry.Value.Invalid) V = 0;
return V;
if (value == ENRSEntry.Value.Int32 ) v = (((((v << 8) | *ptr++) << 8) | *ptr++) << 8) | *ptr++;
else if (value == ENRSEntry.Value.Int16 ) v = (v << 8) | *ptr++;
else if (value == ENRSEntry.Value.Invalid) { v = 0; return true; }
return false;
}
private unsafe static void WriteENRSValue(ref byte* ptr, int val, ENRSEntry.Type type)
private unsafe static bool WriteENRSValue(ref byte* ptr, int val, ENRSEntry.Type type)
{
value = ENRSEntry.Value.Invalid;
if (val < 0x00000040) value = ENRSEntry.Value.Int8 ;
else if (val < 0x00004000) value = ENRSEntry.Value.Int16;
else if (val < 0x40000000) value = ENRSEntry.Value.Int32;
*ptr = (byte)((((byte)value << 6) & 0xC0) | (((byte)type << 4) & 0x30));
if (val < 0x00000010)
{ *ptr |= (byte)( val & 0x0F); }
byte t = (byte)(((byte)type & 0x3) << 4);
if (val < 0x00000010)
*ptr++ = (byte)(((byte)ENRSEntry.Value.Int8 << 6) | t | ( val & 0xF));
else if (val < 0x00001000)
{ *ptr |= (byte)((val >> 8) & 0x0F); ptr++;
*ptr = (byte)( val & 0xFF); }
{
*ptr++ = (byte)(((byte)ENRSEntry.Value.Int16 << 6) | t | ((val >> 8) & 0xF));
*ptr++ = (byte)(val & 0xFF);
}
else if (val < 0x10000000)
{ *ptr |= (byte)((val >> 24) & 0x0F); ptr++;
*ptr = (byte)((val >> 16) & 0xFF); ptr++;
*ptr = (byte)((val >> 8) & 0xFF); ptr++;
*ptr = (byte)( val & 0xFF); }
ptr++;
{
*ptr++ = (byte)(((byte)ENRSEntry.Value.Int32 << 6) | t | ((val >> 24) & 0xF));
*ptr++ = (byte)((val >> 16) & 0xFF);
*ptr++ = (byte)((val >> 8) & 0xFF);
*ptr++ = (byte)( val & 0xFF);
}
else
{
*ptr++ = (byte)ENRSEntry.Value.Invalid << 6;
return true;
}
return false;
}
private unsafe static void WriteENRSValue(ref byte* ptr, int val)
private unsafe static bool WriteENRSValue(ref byte* ptr, int val)
{
value = ENRSEntry.Value.Invalid;
if (val < 0x00000040) value = ENRSEntry.Value.Int8 ;
else if (val < 0x00004000) value = ENRSEntry.Value.Int16;
else if (val < 0x40000000) value = ENRSEntry.Value.Int32;
*ptr = (byte)(((byte)value << 6) & 0xC0);
if (val < 0x00000040)
{ *ptr |= (byte)( val & 0x3F); }
if (val < 0x00000040)
*ptr++ = (byte)(((byte)ENRSEntry.Value.Int8 << 6) | ( val & 0x3F));
else if (val < 0x00004000)
{ *ptr |= (byte)((val >> 8) & 0x3F); ptr++;
*ptr = (byte)( val & 0xFF); }
{
*ptr++ = (byte)(((byte)ENRSEntry.Value.Int16 << 6) | ((val >> 8) & 0x3F));
*ptr++ = (byte)(val & 0xFF);
}
else if (val < 0x40000000)
{ *ptr |= (byte)((val >> 24) & 0x3F); ptr++;
*ptr = (byte)((val >> 16) & 0xFF); ptr++;
*ptr = (byte)((val >> 8) & 0xFF); ptr++;
*ptr = (byte)( val & 0xFF); }
ptr++;
{
*ptr++ = (byte)(((byte)ENRSEntry.Value.Int32 << 6) | ((val >> 24) & 0x3F));
*ptr++ = (byte)((val >> 16) & 0xFF);
*ptr++ = (byte)((val >> 8) & 0xFF);
*ptr++ = (byte)( val & 0xFF);
}
else
{
*ptr++ = (byte)ENRSEntry.Value.Invalid << 6;
return true;
}
return false;
}
public struct ENRSEntry
@@ -215,6 +224,9 @@ namespace KKdBaseLib.F2
public int Repeat;
public SubENRSEntry[] Sub;
public ENRSEntry(int offset, int count, int size, int repeat)
{ Offset = offset; Count = count; Size = size; Repeat = repeat; Sub = new SubENRSEntry[count]; }
public enum Type : byte
{
WORD = 0b00,
@@ -237,16 +249,18 @@ namespace KKdBaseLib.F2
public int Reverse;
public Type Type;
public SubENRSEntry(int skip, int reverse, Type type)
{ Skip = skip; Reverse = reverse; Type = type; }
public int SizeSkip => Skip + Reverse * (2 << (byte)Type);
public int Size => Reverse * (2 << (byte)Type);
public override string ToString() => "Skip: " + Skip +
"; Reverse: " + Reverse + "; Type: " + Type;
public override string ToString() =>
$"Skip: {Skip}; Reverse: {Reverse}; Type: {Type}";
}
public override string ToString() =>
"Offset: " + Offset + "; Count: " + Count + "; " +
"Size: " + Size + "; Repeat: " + Repeat;
$"Offset: {Offset}; Count: {Count}; Size: {Size}; Repeat: {Repeat}";
}
public override string ToString() =>
+9 -10
View File
@@ -2,15 +2,14 @@ namespace KKdBaseLib.F2
{
public struct Header
{
public int Signature;
public int DataSize;
public int Length;
public int Flags;
public int Depth;
public int SectionSize;
public int Mode;
public int InnerSignature;
public int SectionSignature;
public uint Signature; // 0x00
public uint DataSize; // 0x04
public uint Length; // 0x08
public uint Flags; // 0x0C
public uint Depth; // 0x10
public uint SectionSize; // 0x14
public uint Version; // 0x18
public uint InnerSignature; // 0x30
public Format Format;
public bool UseBigEndian;
@@ -18,6 +17,6 @@ namespace KKdBaseLib.F2
public bool IsX => Format == Format.X || Format == Format.XHD;
public override string ToString() => Signature.ToString(false);
public override string ToString() => Signature.ToS(false);
}
}
+69 -35
View File
@@ -12,7 +12,6 @@ namespace KKdBaseLib.F2
public unsafe void Read(byte[] data, bool shiftX)
{
Value Val = 0;
Offsets = KKdList<long>.New;
fixed (byte* ptr = data)
{
@@ -25,14 +24,7 @@ namespace KKdBaseLib.F2
Offsets.Capacity = length;
while (length > i)
{
v = *l & 0x3F;
Val = (Value)(*l & 0xC0);
if (Val == Value.Int32)
{ v = (v << 24) | (l[1] << 16) | (l[2] << 8) | l[3]; l += 4; i += 4; }
else if (Val == Value.Int16)
{ v = (v << 8) | l[1]; l += 2; i += 2; }
else if (Val == Value.Int8 ) { l ++ ; i ++ ; }
else break;
if (ReadPOFValue(ref l, out v)) break;
j++;
offset += v;
Offsets.Add(offset << bitShift);
@@ -44,44 +36,85 @@ namespace KKdBaseLib.F2
public unsafe byte[] Write(bool shiftX)
{
Offsets.Sort();
long offset = 0;
byte bitShift = (byte)(shiftX ? 3 : 2);
int max1 = 0x00100 >> bitShift;
int max2 = 0x10000 >> bitShift;
long j, k, o;
byte bitShift, v;
bitShift = (byte)(shiftX ? 3 : 2);
v = (byte)((1 << bitShift) - 1);
j = 0;
byte[] data = new byte[length(shiftX)];
fixed (byte* ptr = data)
{
byte Val = 0;
*(int*)ptr = length(shiftX);
byte* localPtr = ptr + 4;
byte* l = ptr + 4;
for (int i = 0; i < Offsets.Count; i++)
{
offset = Offsets[i];
if (i > 0) { offset -= Offsets[i - 1]; if (offset == 0) continue; }
o = Offsets[i];
if ((o & v) != 0)
{
WritePOFValue(ref l, 0x7FFFFFFF);
break;
}
offset >>= bitShift;
Val = (byte)(offset > max2 ? Value.Int32 : offset > max1 ? Value.Int16 : Value.Int8);
if (offset < max1) *localPtr = (byte)(Val | offset );
else if (offset < max2) { *localPtr = (byte)(Val | (offset >> 8)); localPtr++;
*localPtr = (byte) offset ; }
else { *localPtr = (byte)(Val | (offset >> 24)); localPtr++;
*localPtr = (byte) (offset >> 16) ; localPtr++;
*localPtr = (byte) (offset >> 8) ; localPtr++;
*localPtr = (byte) offset ; }
localPtr++;
k = o - j;
if (i > 0 & k == 0)
continue;
j = o;
o = k;
WritePOFValue(ref l, o >> bitShift);
}
}
return data;
}
[System.ThreadStatic] private static Value value;
private unsafe static bool ReadPOFValue(ref byte* ptr, out int v)
{
v = *ptr & 0x3F;
value = (Value)((*ptr & 0xC0) >> 6);
ptr++;
if (value == Value.Int32 ) v = (((((v << 8) | *ptr++) << 8) | *ptr++) << 8) | *ptr++;
else if (value == Value.Int16 ) v = (v << 8) | *ptr++;
else if (value == Value.Invalid) { v = 0; return true; }
return false;
}
private unsafe static bool WritePOFValue(ref byte* ptr, long val)
{
if (val < 0x00000040)
*ptr++ = (byte)(((byte)Value.Int8 << 6) | ( val & 0x3F));
else if (val < 0x00004000)
{
*ptr++ = (byte)(((byte)Value.Int16 << 6) | ((val >> 8) & 0x3F));
*ptr++ = (byte)(val & 0xFF);
}
else if (val < 0x40000000)
{
*ptr++ = (byte)(((byte)Value.Int32 << 6) | ((val >> 24) & 0x3F));
*ptr++ = (byte)((val >> 16) & 0xFF);
*ptr++ = (byte)((val >> 8) & 0xFF);
*ptr++ = (byte)( val & 0xFF);
}
else
{
*ptr++ = (byte)Value.Invalid << 6;
return true;
}
return false;
}
private int length(bool shiftX = false)
{
int length = 5;
if (Offsets.IsNull)
return 0;
int length = 4;
long offset = 0;
byte bitShift = (byte)(shiftX ? 3 : 2);
int max1 = 0x00100 >> bitShift;
int max2 = 0x10000 >> bitShift;
int max1 = 0x00000040;
int max2 = 0x00004000;
int max3 = 0x40000000;
for (int i = 0; i < Offsets.Count; i++)
{
offset = Offsets[i];
@@ -90,17 +123,18 @@ namespace KKdBaseLib.F2
offset >>= bitShift;
if (offset < max1) length += 1;
else if (offset < max2) length += 2;
else length += 4;
else if (offset < max3) length += 4;
else length += 1;
}
return length;
}
public enum Value : byte
{
Invalid = 0b00000000,
Int8 = 0b01000000,
Int16 = 0b10000000,
Int32 = 0b11000000,
Invalid = 0b00,
Int8 = 0b01,
Int16 = 0b10,
Int32 = 0b11,
}
public override string ToString() =>
+17 -20
View File
@@ -9,10 +9,8 @@ namespace KKdBaseLib.F2
public ENRS ENRS;
public POF POF;
public int Length => length(false);
public int LengthX => length( true);
public int Depth => Header.Depth;
public uint Length => length(false);
public uint LengthX => length( true);
public bool HasPOF => POF .NotNull;
public bool HasENRS => ENRS.NotNull;
@@ -20,29 +18,28 @@ namespace KKdBaseLib.F2
public long DataOffset;
public override string ToString() => $"{Header.ToString()}" +
$"{(HasSubStructs ? $"; SubStructs: {SubStructs.Length}" : "")}" +
$"{(HasENRS ? "; Has ENRS" : "")}{(HasPOF ? "; Has POF" : "")}";
private int length(bool shiftX = false)
public void Update(bool shiftX = false)
{
int length = Data != null ? Data.Length : 0;
if (HasPOF ) length += 0x20 + (shiftX ? POF.LengthX : POF.Length);
if (HasENRS) length += 0x20 + ENRS.Length;
Header.SectionSize = Data != null ? (uint)Data.Length : 0;
Header.DataSize = length(shiftX);
}
private uint length(bool shiftX = false)
{
uint length = Data != null ? (uint)Data.Length : 0;
if (HasPOF ) length += 0x20 + (uint)(shiftX ? POF.LengthX : POF.Length);
if (HasENRS) length += 0x20 + (uint)ENRS.Length;
if (HasSubStructs)
{
for (int i = 0; i < SubStructs.Length; i++)
length += (shiftX ? SubStructs[i].LengthX : SubStructs[i].Length) + SubStructs[i].Header.Length;
length += (uint)(shiftX ? SubStructs[i].LengthX : SubStructs[i].Length)
+ SubStructs[i].Header.Length;
if (HasPOF || HasENRS || HasSubStructs)
length += 0x20;
}
return length;
}
public void Update(bool ShiftX = false)
{
Header.SectionSize = Data != null ? Data.Length : 0;
Header.DataSize = length(ShiftX);
}
public override string ToString() => $"{Header}" +
$"{(HasSubStructs ? $"; SubStructs: {SubStructs.Length}" : "")}" +
$"{(HasENRS ? "; Has ENRS" : "")}{(HasPOF ? "; Has POF" : "")}";
}
}
+59 -33
View File
@@ -4,67 +4,93 @@ namespace KKdBaseLib
{
public struct Half : IFormattable
{
private ushort _value;
private ushort value;
public static Half NaN => new Half { _value = 0x7FFF };
public static Half PositiveNaN => new Half { _value = 0x7FFF };
public static Half NegativeNaN => new Half { _value = 0xFFFF };
public static Half PositiveZero => new Half { _value = 0x0000 };
public static Half NegativeZero => new Half { _value = 0x8000 };
public static Half PositiveInfinity => new Half { _value = 0x7C00 };
public static Half NegativeInfinity => new Half { _value = 0xFC00 };
public static Half NaN => new Half { value = 0x7FFF };
public static Half PositiveNaN => new Half { value = 0x7FFF };
public static Half NegativeNaN => new Half { value = 0xFFFF };
public static Half PositiveZero => new Half { value = 0x0000 };
public static Half NegativeZero => new Half { value = 0x8000 };
public static Half PositiveInfinity => new Half { value = 0x7C00 };
public static Half NegativeInfinity => new Half { value = 0xFC00 };
public static explicit operator Half(ushort bits) => new Half() { _value = bits };
public static explicit operator Half(ushort bits) => new Half() { value = bits };
public static explicit operator ushort(Half bits) => bits._value;
public static explicit operator ushort(Half bits) => bits.value;
public static unsafe implicit operator float(Half h)
{
int sign = (h._value >> 15) & 0x001;
int exponent = ((h._value >> 10) & 0x01F) + 127 - 15;
int mantissa = h._value & 0x3FF;
int si32;
int sign = (h.value >> 15) & 0x001;
int exponent = (h.value >> 10) & 0x01F;
int mantissa = h.value & 0x3FF;
unchecked { si32 = sign != 0 ? (int)0x80000000 : 0x00000000; }
int si32 = (sign << 31) | (exponent << 23) | (mantissa << 13);
if (exponent == 0x1F) si32 |= 0x7F800000;
else if (exponent != 0x00) si32 |= (exponent - 15 + 127) << 23;
si32 |= mantissa << 13;
return *(float*)&si32;
}
public static unsafe explicit operator Half(float val)
{
int si32 = *(int*)&val;
ushort sign = (ushort)( (si32 >> 16) & 0x8000);
short exponent = ( short)(((si32 >> 23) & 0x00FF) - 127 + 15);
ushort mantissa = (ushort)( (si32 >> 13) & 0x03FF);
if ( si32 == 0x00000000) return new Half { value = 0x0000 };
else if ((uint)si32 == 0x80000000) return new Half { value = 0x8000 };
else
{
ushort sign = (ushort)((si32 >> 31) & 0x001);
ushort exponent = (ushort)((si32 >> 23) & 0x0FF);
ushort mantissa = (ushort)((si32 >> 13) & 0x3FF);
if (exponent < 0) { exponent = 0; mantissa = 0; }
else if (exponent > 30) exponent = 31;
return new Half { _value = (ushort)(sign | (exponent << 10) | mantissa) };
if (exponent == 0xFF) exponent = 31;
else if (exponent != 0x00)
{
exponent -= 127 - 15;
if (exponent < 0) exponent = mantissa = 0;
else if (exponent > 30) exponent = 31;
}
return new Half { value = (ushort)((sign << 15) | (exponent << 10) | mantissa) };
}
}
public static unsafe implicit operator double(Half h)
{
int sign = (h._value >> 15) & 0x001;
int exponent = ((h._value >> 10) & 0x01F) + 1023 - 15;
int mantissa = h._value & 0x3FF;
long si64;
long sign = (h.value >> 15) & 0x001;
long exponent = (h.value >> 10) & 0x01F;
long mantissa = h.value & 0x3FF;
unchecked { si64 = sign != 0 ? (long)0x8000000000000000 : 0x0000000000000000; }
long si64 = ((long)sign << 63) | ((long)exponent << 52) | ((long)mantissa << 42);
if (exponent == 0x1F) si64 |= 0x7FF0000000000000;
else if (exponent != 0x00) si64 |= (exponent - 15 + 1023) << 52;
si64 |= mantissa << 42;
return *(double*)&si64;
}
public static unsafe explicit operator Half(double val)
{
long si64 = *(long*)&val;
ushort sign = (ushort) ((si64 >> 48) & 0x8000);
short exponent = ( short)(((si64 >> 52) & 0x07FF) - 1023 + 15);
ushort mantissa = (ushort) ((si64 >> 42) & 0x03FF);
if ( si64 == 0x0000000000000000) return new Half { value = 0x0000 };
else if ((ulong)si64 == 0x8000000000000000) return new Half { value = 0x8000 };
else
{
ushort sign = (ushort)((si64 >> 63) & 0x001);
ushort exponent = (ushort)((si64 >> 52) & 0x7FF);
ushort mantissa = (ushort)((si64 >> 42) & 0x3FF);
if (exponent < 0) { exponent = 0; mantissa = 0; }
else if (exponent > 30) exponent = 31;
return new Half { _value = (ushort)(sign | (exponent << 10) | mantissa) };
if (exponent == 0x7FF) exponent = 31;
else if (exponent != 0x00)
{
exponent -= 1023 - 15;
if (exponent < 0) exponent = mantissa = 0;
else if (exponent > 30) exponent = 31;
}
return new Half { value = (ushort)((sign << 15) | (exponent << 10) | mantissa) };
}
}
public static Half operator - (Half a ) => new Half() { _value = (ushort)(a._value ^ 0x8000) };
public static Half operator - (Half a ) => new Half() { value = (ushort)(a.value ^ 0x8000) };
public static Half operator + (Half a, Half b) => (Half)((float)a + (float)b);
public static Half operator - (Half a, Half b) => (Half)((float)a - (float)b);
public static Half operator * (Half a, Half b) => (Half)((float)a * (float)b);
+48 -53
View File
@@ -2,7 +2,7 @@ using KKdBaseLib.Auth3D;
namespace KKdBaseLib.Interpolation
{
public class A3DAI : IInterpolation<float> //A3DA Interpolation
public class A3DAI : IInterpolation<float>, System.IDisposable // A3DA Interpolation
{
private A3DAKey a3daKey;
@@ -16,27 +16,27 @@ namespace KKdBaseLib.Interpolation
private KFT3 firstKey;
private KFT3 lastKey;
public float RequestedFramerate { get => rf; set { rf = value; df = @if / rf; } }
public float RequestedFramerate { get => rf; set { rf = value; df = @if / rf; } }
public float Frame => f;
public float Time => t;
public float Value => v;
public bool IsNull => a3daKey.Keys == null ? true : a3daKey.Length < 1;
public bool NotNull => a3daKey.Keys == null ? false : a3daKey.Length > 0;
public bool IsNull => a3daKey.Keys == null || a3daKey.Length < 1;
public bool NotNull => a3daKey.Keys != null && a3daKey.Length > 0;
public A3DAI(Key key, float a3daFramerate = 60, float requestedFramerate = 60)
{
a3daKey = (A3DAKey)key; f = -1; df = @if = rf = t = v = 0;
a3daKey = new A3DAKey(key); f = -1; df = @if = rf = t = v = 0;
@if = a3daFramerate;
firstKey = lastKey = default;
RequestedFramerate = requestedFramerate;
f = -df;
ResetFrameCount();
if (key.Keys != null && key.Length > 0)
if (key.Keys != null && key.Keys.Length > 0)
{
firstKey = key.Keys[0];
lastKey = key.Keys[key.Length - 1];
lastKey = key.Keys[key.Keys.Length - 1];
}
}
@@ -111,56 +111,45 @@ namespace KKdBaseLib.Interpolation
private float Interpolate(float frame)
{
float df = 0;
float ep = 0;
float f = (int)frame;
if (f < firstKey.F)
if (frame < firstKey.F)
{
if (a3daKey.EPTypePost < EPType.EP_1 || a3daKey.EPTypePost > EPType.EP_3) return firstKey.V;
if (a3daKey.EPTypePost < EPType.Linear || a3daKey.EPTypePost > EPType.CycleOffset)
return firstKey.V;
df = firstKey.F - frame;
if (a3daKey.EPTypePre == EPType.EP_1) return firstKey.V - df * firstKey.T1;
float df = firstKey.F - frame;
if (a3daKey.EPTypePre == EPType.Linear)
return firstKey.V - df * firstKey.T1;
frame = lastKey.F - df % a3daKey.FrameDelta;
f = (int)frame;
if (a3daKey.EPTypePre == EPType.EP_3)
{
ep = df / a3daKey.FrameDelta;
ep = (ep > 0 && ep != (int)ep) ? (ep - (int)ep > 0 ? 1 : 0) : ep;
ep = -(ep + 1) * a3daKey.ValueDelta;
}
if (a3daKey.EPTypePre == EPType.CycleOffset)
ep = -(float)((int)(df / a3daKey.FrameDelta) + 1) * a3daKey.ValueDelta;
}
else if (f >= lastKey.F)
else if (frame >= lastKey.F)
{
if (a3daKey.EPTypePost < EPType.EP_1 || a3daKey.EPTypePost > EPType.EP_3) return lastKey.V;
if (a3daKey.EPTypePost < EPType.Linear || a3daKey.EPTypePost > EPType.CycleOffset)
return lastKey.V;
df = frame - lastKey.F;
if (a3daKey.EPTypePost == EPType.EP_1) return lastKey.V + df * lastKey.T2;
float df = frame - lastKey.F;
if (a3daKey.EPTypePost == EPType.Linear)
return lastKey.V + df * lastKey.T2;
frame = firstKey.F + df % a3daKey.FrameDelta;
f = (int)frame;
if (a3daKey.EPTypePost == EPType.EP_3)
{
ep = df / a3daKey.FrameDelta;
ep = (ep > 0 && ep != (int)ep) ? (ep - (int)ep > 0 ? 1 : 0) : ep;
ep = (ep + 1) * a3daKey.ValueDelta;
}
if (a3daKey.EPTypePost == EPType.CycleOffset)
ep = (float)((int)(df / a3daKey.FrameDelta) + 1) * a3daKey.ValueDelta;
}
if (f <= firstKey.F) return firstKey.V + ep;
else if (f >= lastKey.F) return lastKey.V + ep;
KFT3 c, n;
long key = 0;
unsafe
{
fixed (KFT3* ptr = a3daKey.Keys)
{
long key = 0;
long length = a3daKey.Length;
long temp;
while (length > 0)
if (f > a3daKey.Keys[key + (temp = length >> 1)].F)
if (frame >= ptr[key + (temp = length >> 1)].F)
{
key += temp + 1;
length -= temp + 1;
@@ -172,29 +161,35 @@ namespace KKdBaseLib.Interpolation
}
}
float result;
if (frame > c.F && frame < n.F)
float v;
if (frame <= c.F || frame >= n.F)
v = frame > c.F ? n.V : c.V;
else if (a3daKey.Type == KeyType.Linear)
{
if (a3daKey.Type == KeyType.Lerp)
{
float t = (frame - c.F) / (n.F - c.F);
result = (1 - t) * c.V + t * n.V;
}
else if (a3daKey.Type == KeyType.Hermite)
{
float t = (frame - c.F) / (n.F - c.F);
float t_2 = (1 - t) * (1 - t);
result = t_2 * c.V * (1 + 2 * t) + (t * n.V * (3 - 2 * t) +
(t_2 * c.T2 + t * (t - 1) * n.T1) * (n.F - c.F)) * t;
}
else result = c.V;
float t = (frame - c.F) / (n.F - c.F);
v = (1.0f - t) * c.V + t * n.V;
}
else result = frame > c.F ? n.V : c.V;
return result + ep;
else if (a3daKey.Type == KeyType.Hermite)
{
float df = f - c.F;
float t = df / (n.F - c.F);
float t_1 = t - 1.0f;
return c.V + t * t * (3.0f - 2.0f * t) * (n.V - c.V) + (t_1 * c.T2 + t * n.T1) * df * t_1;
}
else v = c.V;
return v + ep;
}
public void ResetFrameCount() { f = -df; t = f / rf; }
public override string ToString() => $"F: {f}; T: {t}; V: {v}";
public void Dispose()
{
a3daKey.Keys = null;
a3daKey = default;
f = t = v = df = @if = rf = default;
firstKey = lastKey = default;
}
}
}
@@ -1,6 +1,6 @@
namespace KKdBaseLib.Interpolation
{
public class PDI : IInterpolation<float> //Project DIVA Interpolation
public class MOTI : IInterpolation<float> // MOT Interpolation
{
private KFT2[] array;
private int length;
@@ -20,10 +20,10 @@ namespace KKdBaseLib.Interpolation
public float Frame => f;
public float Time => t;
public float Value => v;
public bool IsNull => array == null ? true : array.Length < 1;
public bool NotNull => array == null ? false : array.Length > 0;
public bool IsNull => array == null || array.Length < 1;
public bool NotNull => array != null && array.Length > 0;
public PDI(KFT2[] array, float interpolationFramerate = 60, float requestedFramerate = 60)
public MOTI(KFT2[] array, float interpolationFramerate = 60, float requestedFramerate = 60)
{
length = 0;
this.array = array; f = -1; df = @if = rf = t = v = 0;
@@ -87,10 +87,8 @@ namespace KKdBaseLib.Interpolation
private float Interpolate(float frame)
{
float f = (int)frame;
if (f <= firstKey.F) return firstKey.V;
else if (f >= lastKey.F) return lastKey.V;
if (frame <= firstKey.F) return firstKey.V;
else if (frame >= lastKey.F) return lastKey.V;
KFT2 c, n;
unsafe
@@ -101,7 +99,7 @@ namespace KKdBaseLib.Interpolation
long length = this.length;
long temp;
while (length > 0)
if (f > array[key + (temp = length >> 1)].F)
if (frame >= ptr[key + (temp = length >> 1)].F)
{
key += temp + 1;
length -= temp + 1;
@@ -113,18 +111,19 @@ namespace KKdBaseLib.Interpolation
}
}
float result;
if (frame > c.F && frame < n.F)
float v;
if (frame <= c.F || frame >= n.F)
v = frame > c.F ? n.V : c.V;
else
{
float t = (this.f - c.F) / (n.F - c.F);
float t_1 = t - 1;
result = (t_1 * 2 - 1) * (c.V - n.V) * t * t +
(t_1 * c.T + t * n.T) * t_1 * (this.f - c.F) + c.V;
float df = f - c.F;
float t = df / (n.F - c.F);
float t_1 = t - 1.0f;
return c.V + t * t * (3.0f - 2.0f * t) * (n.V - c.V) + (t_1 * c.T + t * n.T) * df * t_1;
}
else result = frame > c.F ? n.V : c.V;
return result;
return v;
}
public void ResetFrameCount() { f = -df; t = f / rf; }
public override string ToString() => $"F: {f}; T: {t}; V: {v}";
+28 -8
View File
@@ -4,7 +4,7 @@ namespace KKdBaseLib
{
public float F;
public KFT0(float F = 0)
public KFT0(float F)
{ this.F = F; }
public KFT0 ToT0() => this;
@@ -55,7 +55,10 @@ namespace KKdBaseLib
public float F;
public float V;
public KFT1(float F = 0, float V = 0)
public KFT1(float F)
{ this.F = F; V = 0; }
public KFT1(float F, float V)
{ this.F = F; this.V = V; }
public KFT0 ToT0() =>
@@ -67,7 +70,7 @@ namespace KKdBaseLib
new KFT3(F, V);
public IKF Check() =>
V == 0 ? (KFT0)this : (IKF)this;
V.ToU32() == 0x00000000 ? (KFT0)this : (IKF)this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
@@ -109,7 +112,13 @@ namespace KKdBaseLib
public float V;
public float T;
public KFT2(float F = 0, float V = 0, float T = 0)
public KFT2(float F)
{ this.F = F; V = T = 0; }
public KFT2(float F, float V)
{ this.F = F; this.V = V; T = 0; }
public KFT2(float F, float V, float T)
{ this.F = F; this.V = V; this.T = T; }
public KFT0 ToT0() =>
@@ -118,7 +127,7 @@ namespace KKdBaseLib
new KFT1(F, V);
public KFT2 ToT2() => this;
public KFT3 ToT3() =>
new KFT3(F, V, T, T);
new KFT3(F, V, T);
public KFT3 ToT3(IKF Previous) =>
Previous is KFT2 PreviousT2 ?
@@ -126,7 +135,7 @@ namespace KKdBaseLib
new KFT3(F, V, T, T);
public IKF Check() =>
T == 0 ? (V == 0 ? (IKF)ToT0() : ToT1()) : this;
T.ToU32() == 0x00000000 ? (V.ToU32() == 0x00000000 ? (IKF)ToT0() : ToT1()) : this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
@@ -169,7 +178,16 @@ namespace KKdBaseLib
public float T1;
public float T2;
public KFT3(float F = 0, float V = 0, float T1 = 0, float T2 = 0)
public KFT3(float F)
{ this.F = F; V = T1 = T2 = 0; }
public KFT3(float F, float V)
{ this.F = F; this.V = V; T1 = T2 = 0; }
public KFT3(float F, float V, float T)
{ this.F = F; this.V = V; T1 = T2 = T; }
public KFT3(float F, float V, float T1, float T2)
{ this.F = F; this.V = V; this.T1 = T1; this.T2 = T2; }
public KFT0 ToT0() =>
@@ -181,7 +199,9 @@ namespace KKdBaseLib
public KFT3 ToT3() => this;
public IKF Check() =>
T1 == 0 && T2 == 0 ? (V == 0 ? (IKF)(KFT0)this : (KFT1)this) : T1 == T2 ? (KFT2)this : (IKF)this;
T1.ToU32() == 0x00000000 && T2.ToU32() == 0x00000000
? (V.ToU32() == 0x00000000 ? (IKF)(KFT0)this : (KFT1)this)
: T1.ToU32() == T2.ToU32() ? (KFT2)this : (IKF)this;
public override string ToString() => ToString(true, 7);
public string ToString(int round = 7, bool brackets = true) =>
+10 -7
View File
@@ -1,17 +1,17 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Authors>korenkonder</Authors>
<Company></Company>
<Configuration></Configuration>
<Copyright>korenkonder © 2019-2020</Copyright>
<Copyright>korenkonder (C) 2019-2025</Copyright>
<Description>A base library</Description>
<FileVersion>0.4.9.3</FileVersion>
<FileVersion>0.5.0.0</FileVersion>
<PackageId>KKdBaseLib</PackageId>
<Product>KKdBaseLib</Product>
<TargetFramework>netstandard2.0</TargetFramework>
<TargetFramework>net461</TargetFramework>
<Title>KKdBaseLib</Title>
<Version>0.4.9.3</Version>
<Version>0.5.0.0</Version>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -24,7 +24,7 @@
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -37,6 +37,9 @@
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<Reference Include="System.Windows.Forms" />
</ItemGroup>
</Project>
+25 -19
View File
@@ -4,8 +4,8 @@ namespace KKdBaseLib
{
public static KKdDict<TKey, TValue> Null => new KKdDict<TKey, TValue>();
public static KKdDict<TKey, TValue> New => new KKdDict<TKey, TValue>() { count = 0, Capacity = 0 };
public static KKdDict<TKey, TValue> NewReserve(int Capacity) =>
new KKdDict<TKey, TValue>() { count = 0, Capacity = Capacity };
public static KKdDict<TKey, TValue> NewReserve(int capacity) =>
new KKdDict<TKey, TValue>() { count = 0, Capacity = capacity };
private int count;
private int index;
@@ -27,7 +27,13 @@ namespace KKdBaseLib
{
this.keyArray = null; this.valArray = null; count = 0; index = 0;
if (keyArray == null || valArray == null || keyArray.Length != valArray.Length) return;
count = valArray.Length; this.keyArray = keyArray; this.valArray = valArray; }
count = this.keyArray.Length;
this.keyArray = new TKey [count];
this.valArray = new TValue[count];
System.Array.Copy(keyArray, this.keyArray, count);
System.Array.Copy(valArray, this.valArray, count);
}
public KeyValuePair<TKey, TValue> Current => index < count ?
new KeyValuePair<TKey, TValue>(keyArray[index], valArray[index]) : default;
@@ -73,22 +79,22 @@ namespace KKdBaseLib
public void Add(KeyValuePair<TKey, TValue> pair)
{
if (IsNull) return;
if (IsNull || ContainsKey(pair.Key)) return;
count++;
if (keyArray.Length < count) System.Array.Resize(ref keyArray, count);
if (valArray.Length < count) System.Array.Resize(ref valArray, count);
if (keyArray.Length < count) System.Array.Resize(ref keyArray, keyArray.Length * 2 + 1);
if (valArray.Length < count) System.Array.Resize(ref valArray, valArray.Length * 2 + 1);
keyArray[count - 1] = pair.Key;
valArray[count - 1] = pair.Value;
}
public void Add(TKey key, TValue val)
{
if (IsNull) return;
if (IsNull || ContainsKey(key)) return;
count++;
if (keyArray.Length < count) System.Array.Resize(ref keyArray, count);
if (valArray.Length < count) System.Array.Resize(ref valArray, count);
if (keyArray.Length < count) System.Array.Resize(ref keyArray, keyArray.Length * 2 + 1);
if (valArray.Length < count) System.Array.Resize(ref valArray, valArray.Length * 2 + 1);
keyArray[count - 1] = key;
valArray[count - 1] = val;
}
@@ -101,8 +107,8 @@ namespace KKdBaseLib
if (index == -1) return false;
if (index + 1 < count)
{ System.Array.Copy(keyArray, index + 1, keyArray, index, count - index);
System.Array.Copy(valArray, index + 1, valArray, index, count - index); }
{ System.Array.Copy(keyArray, index + 1, keyArray, index, count - index - 1);
System.Array.Copy(valArray, index + 1, valArray, index, count - index - 1); }
count--;
return true;
}
@@ -115,8 +121,8 @@ namespace KKdBaseLib
if (index == -1) return false;
if (index + 1 < count)
{ System.Array.Copy(keyArray, index + 1, keyArray, index, count - index);
System.Array.Copy(valArray, index + 1, valArray, index, count - index); }
{ System.Array.Copy(keyArray, index + 1, keyArray, index, count - index - 1);
System.Array.Copy(valArray, index + 1, valArray, index, count - index - 1); }
count--;
return true;
}
@@ -126,8 +132,8 @@ namespace KKdBaseLib
if (IsNull || index < 0 || index >= count) return;
if (index + 1 < count)
{ System.Array.Copy(keyArray, index + 1, keyArray, index, count - index);
System.Array.Copy(valArray, index + 1, valArray, index, count - index); }
{ System.Array.Copy(keyArray, index + 1, keyArray, index, count - index - 1);
System.Array.Copy(valArray, index + 1, valArray, index, count - index - 1); }
count--;
}
@@ -192,9 +198,9 @@ namespace KKdBaseLib
{
if (IsNull) return default;
for (int i = 0; i < count; i++)
if (keyArray[i] == null && val == null) return keyArray[i];
else if (keyArray[i] == null || val == null) continue;
else if (keyArray[i].Equals(val)) return keyArray[i];
if (valArray[i] == null && val == null) return keyArray[i];
else if (valArray[i] == null || val == null) continue;
else if (valArray[i].Equals(val)) return keyArray[i];
return default;
}
@@ -231,6 +237,6 @@ namespace KKdBaseLib
{ Key = key; Value = value; }
public override string ToString() =>
$"(Key: {Key}; value: {Value})";
$"(Key: {Key}; Value: {Value})";
}
}
+22 -6
View File
@@ -7,7 +7,7 @@ namespace KKdBaseLib
{
public static KKdList<T> Null => new KKdList<T>();
public static KKdList<T> New => new KKdList<T>() { count = 0, Capacity = 0 };
public static KKdList<T> NewReserve(int Capacity) => new KKdList<T>() { count = 0, Capacity = Capacity };
public static KKdList<T> NewReserve(int capacity) => new KKdList<T>() { count = 0, Capacity = capacity };
private int count;
private int index;
@@ -26,7 +26,21 @@ namespace KKdBaseLib
public KKdList(T[] array)
{ index = -1; count = array.Length; this.array = array; enumerator = new Enumerator(this.array); }
{
index = -1;
if (array != null)
{
count = array.Length;
this.array = new T[count];
System.Array.Copy(array, this.array, count);
}
else
{
count = 0;
this.array = null;
}
enumerator = new Enumerator(this.array);
}
public T Current => index > -1 && index < Count ? array[index] : default;
@@ -61,7 +75,7 @@ namespace KKdBaseLib
count++;
if (array.Length < count)
System.Array.Resize(ref array, count);
System.Array.Resize(ref array, array.Length * 2 + 1);
array[count - 1] = item;
}
@@ -70,7 +84,7 @@ namespace KKdBaseLib
if (IsNull || index < 0 || index >= count) return;
if (index + 1 < count)
System.Array.Copy(array, index + 1, array, index, count - index);
System.Array.Copy(array, index + 1, array, index, count - index - 1);
count--;
}
@@ -107,13 +121,15 @@ namespace KKdBaseLib
}
public void Sort()
{ List<T> List = (List<T>)this; List.Sort(); array = List.ToArray(); count = List.Count; }
{ Capacity = Count; List<T> List = (List<T>)this; List.Sort();
array = List.ToArray(); count = List.Count; }
public static explicit operator KKdList<T>( List<T> list) =>
new KKdList<T> { array = list.ToArray(), count = list.Count };
public static explicit operator List<T>(KKdList<T> list)
{ List<T> outList = new List<T>(); for (int i = 0; i < list.Count; i++) outList.Add(list[i]); return outList; }
{ list.Capacity = list.Count; List<T> outList = new List<T>();
for (int i = 0; i < list.Count; i++) outList.Add(list[i]); return outList; }
public override string ToString() =>
$"(Count: {Count}; Capacity: {Capacity}; Current: {Current})";
+283
View File
@@ -0,0 +1,283 @@
using System;
using System.Linq;
using System.Globalization;
using System.Collections.Generic;
using A3DADict = System.Collections.Generic.Dictionary<string, object>;
namespace KKdBaseLib
{
public static unsafe class Main
{
public const string TimeFormatHHmmssfff = "{0:d2}:{1:d2}:{2:d2}.{3:d3}";
public static void WT(this TimeSpan time, bool writeLine = false)
{
if (writeLine) Console.WriteLine(TimeFormatHHmmssfff,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
else Console.Write (TimeFormatHHmmssfff,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
}
public static void WT(this TimeSpan time, string text, bool writeLine = true)
{
if (writeLine) Console.WriteLine(TimeFormatHHmmssfff + " - " + text,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
else Console.Write (TimeFormatHHmmssfff + " - " + text,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
}
public static string NT(this string source, ref int i, byte end)
{
string s = "";
while (true)
{
if (source[i] == end) break;
else s += source[i];
i++;
}
return s;
}
public static bool SW(this A3DADict dict, string args, char split = '.') =>
dict.SW(args.Split(split));
public static bool SW(this A3DADict dict, string[] args)
{
if (dict == null || args.Length < 1) return false;
if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++)
newArgs[i] = args[i + 1];
return dict.ContainsKey(args[0]) && SW((A3DADict)dict[args[0]], newArgs);
}
return dict.ContainsKey(args[0]);
}
public static bool FV (this A3DADict dict, ref bool value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && bool.TryParse(val, out value);
public static bool FV (this A3DADict dict, ref int value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && int.TryParse(val, out value);
public static bool FV (this A3DADict dict, ref uint value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && uint.TryParse(val, out value);
public static bool FV (this A3DADict dict, ref long value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && long.TryParse(val, out value);
public static bool FV (this A3DADict dict, ref ulong value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && ulong.TryParse(val, out value);
public static bool FV (this A3DADict dict, ref float value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && val.ToF32(out value);
public static bool FV (this A3DADict dict, ref double value, char split, string args) =>
dict.FV(out string val, args.Split(split)) && val.ToF64(out value);
public static bool FV (this A3DADict dict, ref string value, char split, string args)
{ if (dict.FV(out string val , args.Split(split)))
{ value = val; return true; } return false; }
public static bool FV (this A3DADict dict, out bool value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return bool.TryParse(val, out value); value = false; return false; }
public static bool FV (this A3DADict dict, out int value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return int.TryParse(val, out value); value = 0; return false; }
public static bool FV (this A3DADict dict, out uint value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return uint.TryParse(val, out value); value = 0; return false; }
public static bool FV (this A3DADict dict, out long value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return long.TryParse(val, out value); value = 0; return false; }
public static bool FV (this A3DADict dict, out ulong value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return ulong.TryParse(val, out value); value = 0; return false; }
public static bool FV (this A3DADict dict, out float value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF32(out value); value = 0; return false; }
public static bool FV (this A3DADict dict, out double value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF64(out value); value = 0; return false; }
public static bool FV<T>(this A3DADict dict, out T value, string args) where T : struct, Enum
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = Enum.TryParse(val, out T _value); value = _value; return Val; }
value = default; return false; }
public static bool FV (this A3DADict dict, out int? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = int.TryParse(val, out int _value); value = _value; return Val; }
value = null; return false; }
public static bool FV (this A3DADict dict, out uint? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = uint.TryParse(val, out uint _value); value = _value; return Val; }
value = null; return false; }
public static bool FV (this A3DADict dict, out long? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = long.TryParse(val, out long _value); value = _value; return Val; }
value = null; return false; }
public static bool FV (this A3DADict dict, out ulong? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = ulong.TryParse(val, out ulong _value); value = _value; return Val; }
value = null; return false; }
public static bool FV (this A3DADict dict, out float? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF32(out value); value = null; return false; }
public static bool FV (this A3DADict dict, out double? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF64(out value); value = null; return false; }
public static bool FV<T>(this A3DADict dict, out T? value, string args) where T : struct
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = Enum.TryParse(val, out T _value); value = _value; return Val; }
value = null; return false; }
public static bool FV (this A3DADict dict, out string value, string args) =>
dict.FV(out value, args.Split('.' ));
public static bool FV(this A3DADict dict, out string value, string[] args)
{
value = null;
if (dict == null || args.Length < 1) return false;
if (!dict.ContainsKey(args[0])) return false;
else if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
return ((A3DADict)dict[args[0]]).FV(out value, newArgs);
}
else if (args.Length == 1)
{
if (dict[args[0]].GetType() == dict.GetType())
return ((A3DADict)dict[args[0]]).FV(out value, args);
else if (dict[args[0]].GetType() != typeof(string)) return false;
}
value = (string)dict[args[0]];
return true;
}
public static bool FK(this A3DADict dict, string args) =>
dict.FK(args.Split('.' ));
public static bool FK(this A3DADict dict, string[] args)
{
if (dict == null || args.Length < 1) return false;
args[0] = args[0].ToLower();
if (!dict.ContainsKey(args[0])) return false;
else if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
return ((A3DADict)dict[args[0]]).FK(newArgs);
}
return true;
}
public static void GD(this A3DADict dict, string args, char split = '.')
{
string[] dataArray = args.Split('=');
if (dataArray.Length == 2)
dict.GD(dataArray[0].Split(split), dataArray[1]);
dataArray = null;
}
public static void GD(this A3DADict dict, string args, string value, char split = '.') =>
dict.GD(args.Split(split), value);
public static void GD(this A3DADict dict, string[] args, string value)
{
if (dict == null) dict = new A3DADict();
else if (args.Length < 1) return;
if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
if (!dict.ContainsKey(args[0])) dict.Add(args[0], null);
if (dict[args[0]] != null)
{
if (dict[args[0]].GetType() == typeof(string))
dict[args[0]] = new A3DADict { { "", dict[args[0]] } };
}
else dict[args[0]] = new A3DADict();
A3DADict bufDict = (A3DADict)dict[args[0]];
bufDict.GD(newArgs, value);
dict[args[0]] = bufDict;
}
else if (!dict.ContainsKey(args[0])) dict.Add(args[0], value);
}
public static TKey GK<TKey, TVal>(this Dictionary<TKey, TVal> dict, TVal val) =>
dict.First((System.Collections.Generic.KeyValuePair<TKey, TVal> x) => x.Value.Equals(val)).Key;
public static string TTC(this string s) =>
CultureInfo.CurrentCulture.TextInfo.ToTitleCase(s);
public static int[] SW(this int length)
{
int i, j, m;
if (length <= 0) return new int[0];
if (length == 1) return new int[1] { 0 };
int[] sort = new int[length];
sort[0] = 0;
i = 1;
j = 1;
m = 1;
while (m < length)
m *= 10;
while (i < length)
{
if (j * 10 < m)
{
sort[i++] = j;
j *= 10;
}
else if (j >= length)
{
m /= 10;
j /= 10;
while (j % 10 == 9) j /= 10;
j++;
}
else if (j % 10 != 9)
sort[i++] = j++;
if (i < length)
if (j == length && j % 10 != 9)
{
m /= 10;
j /= 10;
while (j % 10 == 9) j /= 10;
j++;
}
else if (j < length && j % 10 == 9)
{
sort[i++] = j;
while (j % 10 == 9) j /= 10;
j++;
}
}
return sort;
}
}
}
+3 -3
View File
@@ -10,7 +10,7 @@ namespace KKdBaseLib
public Vec2 Column0 { get => new Vec2(Row0.X, Row1.X);
set { Row0.X = value.X; Row1.X = value.Y; } }
public Vec2 Column1 { get => new Vec2(Row0.Y, Row1.X);
public Vec2 Column1 { get => new Vec2(Row0.Y, Row1.Y);
set { Row0.Y = value.X; Row1.Y = value.Y; } }
public static Mat2 Identity => new Mat2(new Vec2(1.0f, 0.0f),
@@ -69,7 +69,7 @@ namespace KKdBaseLib
if (irow != icol)
for (int k = 0; k < 2; k++)
(inverse[irow, k], inverse[icol, k]) = (inverse[icol, k], inverse[irow, k]);
{ float t = inverse[irow, k]; inverse[irow, k] = inverse[icol, k]; inverse[icol, k] = t; }
rowIdx[i] = irow;
colIdx[i] = icol;
@@ -97,7 +97,7 @@ namespace KKdBaseLib
int ir = rowIdx[j];
int ic = colIdx[j];
for (int k = 0; k < 2; k++)
(inverse[k, ic], inverse[k, ir]) = (inverse[k, ir], inverse[k, ic]);
{ float t = inverse[k, ic]; inverse[k, ic] = inverse[k, ir]; inverse[k, ir] = t; }
}
result.Row0.X = inverse[0, 0]; result.Row0.Y = inverse[0, 1];
+3 -3
View File
@@ -11,7 +11,7 @@ namespace KKdBaseLib
public Vec3 Column0 { get => new Vec3(Row0.X, Row1.X, Row2.X);
set { Row0.X = value.X; Row1.X = value.Y; Row2.X = value.Z; } }
public Vec3 Column1 { get => new Vec3(Row0.Y, Row1.X, Row2.Y);
public Vec3 Column1 { get => new Vec3(Row0.Y, Row1.Y, Row2.Y);
set { Row0.Y = value.X; Row1.Y = value.Y; Row2.Y = value.Z; } }
public Vec3 Column2 { get => new Vec3(Row0.Z, Row1.Z, Row2.Z);
set { Row0.Z = value.X; Row1.Z = value.Y; Row2.Z = value.Z;} }
@@ -154,7 +154,7 @@ namespace KKdBaseLib
if (irow != icol)
for (int k = 0; k < 3; k++)
(inverse[irow, k], inverse[icol, k]) = (inverse[icol, k], inverse[irow, k]);
{ float t = inverse[irow, k]; inverse[irow, k] = inverse[icol, k]; inverse[icol, k] = t; }
rowIdx[i] = irow;
colIdx[i] = icol;
@@ -182,7 +182,7 @@ namespace KKdBaseLib
int ir = rowIdx[j];
int ic = colIdx[j];
for (int k = 0; k < 3; k++)
(inverse[k, ic], inverse[k, ir]) = (inverse[k, ir], inverse[k, ic]);
{ float t = inverse[k, ic]; inverse[k, ic] = inverse[k, ir]; inverse[k, ir] = t; }
}
result.Row0.X = inverse[0, 0]; result.Row0.Y = inverse[0, 1]; result.Row0.Z = inverse[0, 2];
+42 -12
View File
@@ -1,3 +1,4 @@
using System;
using System.Runtime.InteropServices;
namespace KKdBaseLib
@@ -12,7 +13,7 @@ namespace KKdBaseLib
public Vec4 Column0 { get => new Vec4(Row0.X, Row1.X, Row2.X, Row3.X);
set { Row0.X = value.X; Row1.X = value.Y; Row2.X = value.Z; Row3.X = value.W; } }
public Vec4 Column1 { get => new Vec4(Row0.Y, Row1.X, Row2.Y, Row3.Y);
public Vec4 Column1 { get => new Vec4(Row0.Y, Row1.Y, Row2.Y, Row3.Y);
set { Row0.Y = value.X; Row1.Y = value.Y; Row2.Y = value.Z; Row3.Y = value.W; } }
public Vec4 Column2 { get => new Vec4(Row0.Z, Row1.Z, Row2.Z, Row3.Z);
set { Row0.Z = value.X; Row1.Z = value.Y; Row2.Z = value.Z; Row3.Z = value.W; } }
@@ -79,7 +80,7 @@ namespace KKdBaseLib
if (trace > 0)
{
double sq = System.Math.Sqrt(trace);
double sq = Math.Sqrt(trace);
q.W = (float)sq;
sq = 1.0 / (4.0 * sq);
@@ -89,7 +90,7 @@ namespace KKdBaseLib
}
else if (row0.X > row1.Y && row0.X > row2.Z)
{
double sq = 2.0 * System.Math.Sqrt(1.0 + row0.X - row1.Y - row2.Z);
double sq = 2.0 * Math.Sqrt(1.0 + row0.X - row1.Y - row2.Z);
q.X = (float)(0.25 * sq);
sq = 1.0 / sq;
@@ -99,7 +100,7 @@ namespace KKdBaseLib
}
else if (row1.Y > row2.Z)
{
double sq = 2.0 * System.Math.Sqrt(1.0 + row1.Y - row0.X - row2.Z);
double sq = 2.0 * Math.Sqrt(1.0 + row1.Y - row0.X - row2.Z);
q.Y = (float)(0.25 * sq);
sq = 1.0 / sq;
@@ -109,7 +110,7 @@ namespace KKdBaseLib
}
else
{
double sq = 2.0 * System.Math.Sqrt(1.0 + row2.Z - row0.X - row1.Y);
double sq = 2.0 * Math.Sqrt(1.0 + row2.Z - row0.X - row1.Y);
q.Z = (float)(0.25 * sq);
sq = 1.0 / sq;
@@ -121,6 +122,33 @@ namespace KKdBaseLib
return q.Normalized;
}
public Vec3 GetRotation()
{
Vec3 rotation;
if (-Row0.Z >= 1.0f)
rotation.Y = (float)(Math.PI / 2.0);
else if (-Row0.Z <= -1.0f)
rotation.Y = (float)(-Math.PI / 2.0);
else
rotation.Y = (float)Math.Asin(-Row0.Z);
if (Math.Abs(Row0.Z) < 0.99999899f) {
rotation.X = (float)Math.Atan2(Row1.Z, Row2.Z);
rotation.Z = (float)Math.Atan2(Row0.Y, Row0.X);
}
else {
rotation.X = 0.0f;
rotation.Z = (float)Math.Atan2(Row2.Y, Row1.Y);
if (Row0.Z > 0.0f)
rotation.Z = -rotation.Z;
}
return rotation;
}
public Vec3 GetScale() => new Vec3(Row0.Length, Row1.Length, Row2.Length);
public Vec3 GetTranslation() => Row3.XYZ;
public Mat4 Invert() => -this;
public Mat4 Translate(Vec3 vec)
@@ -129,7 +157,13 @@ namespace KKdBaseLib
public Mat4 Translate(Vec4 vec)
{ Row3 = vec * this; return this; }
public static Mat4 operator +(Mat4 left, Mat4 right)
public void TransformVector(in Vec3 normal, out Vec3 normalOut) {
normalOut = (Row0 * new Vec4(normal.X) +
Row1 * new Vec4(normal.Y) +
Row2 * new Vec4(normal.Z)).XYZ;
}
public static Mat4 operator +(Mat4 left, Mat4 right)
{ left.Row0 += right.Row0; left.Row1 += right.Row1;
left.Row2 += right.Row2; left.Row3 += right.Row3; return left; }
@@ -181,7 +215,7 @@ namespace KKdBaseLib
if (irow != icol)
for (int k = 0; k < 4; k++)
(inverse[irow, k], inverse[icol, k]) = (inverse[icol, k], inverse[irow, k]);
{ float t = inverse[irow, k]; inverse[irow, k] = inverse[icol, k]; inverse[icol, k] = t; }
rowIdx[i] = irow;
colIdx[i] = icol;
@@ -209,11 +243,7 @@ namespace KKdBaseLib
int ir = rowIdx[j];
int ic = colIdx[j];
for (int k = 0; k < 4; k++)
{
float f = inverse[k, ir];
inverse[k, ir] = inverse[k, ic];
inverse[k, ic] = f;
}
{ float t = inverse[k, ic]; inverse[k, ic] = inverse[k, ir]; inverse[k, ir] = t; }
}
result.Row0.X = inverse[0, 0]; result.Row0.Y = inverse[0, 1];
+23 -3
View File
@@ -26,8 +26,6 @@ namespace KKdBaseLib
public MsgPack(string name, object @object)
{ Name = name; Object = @object; }
public static MsgPack Null => new MsgPack();
public MsgPack this[ int index]
{ get => Object is MsgPack[] Array ? Array[index] : default;
set { if (Object is MsgPack[] Array) { Array[index] = value; Object = Array; } } }
@@ -47,7 +45,12 @@ namespace KKdBaseLib
public MsgPack this[string key, bool array]
{ get { if (!array) return this[key];
if (Object is KKdList<MsgPack> List) { MsgPack MsgPack = List[ElementIndex(key)];
if (Object is KKdList<MsgPack> List) { MsgPack MsgPack = List[ElementIndex(key)];
return MsgPack.Object is MsgPack[] ? MsgPack : default; } return default; } }
public MsgPack this[bool startsWith, string key]
{ get { if (Object is KKdList<MsgPack> List) { MsgPack MsgPack =
List[startsWith ? ElementIndexStartsWith(key) : ElementIndex(key)];
return MsgPack.Object is MsgPack[] ? MsgPack : default; } return default; } }
public MsgPack Add(MsgPack obj)
@@ -377,6 +380,17 @@ namespace KKdBaseLib
return -1;
}
public bool ContainsKeyStartsWith(string name) => ElementIndexStartsWith(name) > -1;
public int ElementIndexStartsWith(string name)
{
if (List.IsNull) return -1;
for (int i = 0; i < List.Count; i++)
if (List[i].Name.StartsWith(name)) return i;
return -1;
}
public struct Ext
{
@@ -384,4 +398,10 @@ namespace KKdBaseLib
public byte[] Data;
}
}
public interface IMsgPack : INull
{
//public void ReadMsgPack();
public MsgPack WriteMsgPack(string name);
}
}
+1 -1
View File
@@ -1,4 +1,4 @@
using System.Reflection;
using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTrademark("")]
+63 -104
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@@ -12,92 +12,49 @@ namespace KKdBaseLib
public static Quat Identity => new Quat(0.0f, 0.0f, 0.0f, 1.0f);
public Quat(float X, float Y, float Z)
public Quat(float x, float y, float z)
{
X *= 0.5f;
Y *= 0.5f;
Z *= 0.5f;
x *= 0.5f;
y *= 0.5f;
z *= 0.5f;
var c1 = (float)System.Math.Cos(X);
var c2 = (float)System.Math.Cos(Y);
var c3 = (float)System.Math.Cos(Z);
var s1 = (float)System.Math.Sin(X);
var s2 = (float)System.Math.Sin(Y);
var s3 = (float)System.Math.Sin(Z);
var c1 = (float)System.Math.Cos(x);
var c2 = (float)System.Math.Cos(y);
var c3 = (float)System.Math.Cos(z);
var s1 = (float)System.Math.Sin(x);
var s2 = (float)System.Math.Sin(y);
var s3 = (float)System.Math.Sin(z);
this.X = s1 * c2 * c3 + c1 * s2 * s3;
this.Y = c1 * s2 * c3 - s1 * c2 * s3;
this.Z = c1 * c2 * s3 + s1 * s2 * c3;
W = c1 * c2 * c3 - s1 * s2 * s3;
X = s1 * c2 * c3 + c1 * s2 * s3;
Y = c1 * s2 * c3 - s1 * c2 * s3;
Z = c1 * c2 * s3 + s1 * s2 * c3;
W = c1 * c2 * c3 - s1 * s2 * s3;
}
public Quat(Vec3 vec) : this(vec.X, vec.Y, vec.Z)
{ }
public Quat(float X, float Y, float Z, float W)
{ this.X = X; this.Y = Y; this.Z = Z; this.W = W; }
public Quat(float x, float y, float z, float w)
{ X = x; Y = y; Z = z; W = w; }
public Quat(Vec3 vec, float W)
{ X = vec.X; Y = vec.Y; Z = vec.Z; this.W = W; }
public Quat(Vec3 vec, float w)
{ X = vec.X; Y = vec.Y; Z = vec.Z; W = w; }
public Quat(Vec4 vec)
{ X = vec.X; Y = vec.Y; Z = vec.Z; W = vec.W; }
public Vec3 XYZ { get => new Vec3(X, Y, Z); set { X = value.X; Y = value.Y; Z = value.Z; } }
public float Length => (X * X + Y * Y + Z * Z + W * W).Sqrt();
public float LengthSquared => X * X + Y * Y + Z * Z + W * W;
public Quat Normalized => new Quat(X, Y, Z, W) * (Length == 0.0f ? 1.0f : (1.0f / Length));
public Vec3 Euler { get
{
if (LengthSquared == 0) return default;
const float SINGULARITY_THRESHOLD = 0.4999995f;
const float HalfPI = (float)(System.Math.PI * 0.5);
float sqx = X * X, sqy = Y * Y, sqz = Z * Z, sqw = W * W;
float unit = sqx + sqy + sqz + sqw;
float singularityTest = X * Z + Y * W;
if (singularityTest > SINGULARITY_THRESHOLD * unit)
return new Vec3(0.0f, HalfPI, (float)(System.Math.Atan2(X, W) * 2.0));
else if (singularityTest < -SINGULARITY_THRESHOLD * unit)
return new Vec3(0.0f, -HalfPI, -(float)(System.Math.Atan2(X, W) * 2.0));
else
return new Vec3((float)System.Math.Atan2(2 * (X * W - Y * Z), sqw - sqx - sqy + sqz),
(float)System.Math.Asin (2 * singularityTest / unit),
(float)System.Math.Atan2(2 * (Z * W - X * Y), sqw + sqx - sqy - sqz));
}
}
public Vec3 EulerDeg { get
{
if (LengthSquared == 0) return default;
const float SINGULARITY_THRESHOLD = 0.4999995f;
const float HalfPI = (float)(System.Math.PI * 0.5);
float sqx = X * X, sqy = Y * Y, sqz = Z * Z, sqw = W * W;
float unit = sqx + sqy + sqz + sqw;
float singularityTest = X * Z + Y * W;
if (singularityTest > SINGULARITY_THRESHOLD * unit)
return new Vec3(0.0f, HalfPI, (float)(System.Math.Atan2(X, W) * 2.0));
else if (singularityTest < -SINGULARITY_THRESHOLD * unit)
return new Vec3(0.0f, -HalfPI, -(float)(System.Math.Atan2(X, W) * 2.0));
else
return new Vec3((float)System.Math.Atan2(2 * (X * W - Y * Z), sqw - sqx - sqy + sqz),
(float)System.Math.Asin (2 * singularityTest / unit),
(float)System.Math.Atan2(2 * (Z * W - X * Y), sqw + sqx - sqy - sqz))
* (float)(180.0 / System.Math.PI);
}
}
public readonly float Length => (X * X + Y * Y + Z * Z + W * W).Sqrt();
public readonly float LengthSquared => X * X + Y * Y + Z * Z + W * W;
public readonly Quat Normalized => this * (Length == 0.0f ? 1.0f : (1.0f / Length));
public static Quat operator +(Quat left, Quat right)
{ left.X += right.X; left.Y += right.Y; left.Z += right.Z; left.W += right.W; return left; }
public static Quat operator -(Quat left, Quat right)
{ left.X -= right.X; left.Y -= right.Y; left.Z -= right.Z; left.W -= right.W; return left; }
public static Quat operator -(Quat quat) =>
new Quat(-quat.X, -quat.Y, -quat.Z, quat.W);
new Quat(-quat.X, -quat.Y, -quat.Z, -quat.W);
public static Quat operator *( Quat quat, float scale)
{ quat.X *= scale ; quat.Y *= scale ; quat.Z *= scale ; quat.W *= scale ; return quat; }
public static Quat operator *(float scale, Quat quat)
@@ -112,56 +69,58 @@ namespace KKdBaseLib
public static bool operator ==(Quat A, Quat B) => A.Equals(B);
public static bool operator !=(Quat A, Quat B) => !A.Equals(B);
public static float Distance (Vec4 left, Vec4 right) =>
public static float Distance (Quat left, Quat right) =>
((right.X - left.X) * (right.X - left.X) + (right.Y - left.Y) * (right.Y - left.Y) +
(right.Z - left.Z) * (right.Z - left.Z) + (right.W - left.W) * (right.W - left.W)).Sqrt();
public static float DistanceSquared(Vec4 left, Vec4 right) =>
public static float DistanceSquared(Quat left, Quat right) =>
(right.X - left.X) * (right.X - left.X) + (right.Y - left.Y) * (right.Y - left.Y) +
(right.Z - left.Z) * (right.Z - left.Z) + (right.W - left.W) * (right.W - left.W);
public static float Dot(Vec4 left, Vec4 right) =>
public static float Dot(Quat left, Quat right) =>
left.X * right.X + left.Y * right.Y + left.Z * right.Z + left.W * right.W;
public Vec4 Round( ) =>
new Vec4 { X = X.Round( ), Y = Y.Round( ), Z = Z.Round( ), W = W.Round( ) };
public Vec4 Round(int d) =>
new Vec4 { X = X.Round(d), Y = Y.Round(d), Z = Z.Round(d), W = W.Round(d) };
public Quat Round( ) =>
new Quat { X = X.Round( ), Y = Y.Round( ), Z = Z.Round( ), W = W.Round( ) };
public Quat Round(int d) =>
new Quat { X = X.Round(d), Y = Y.Round(d), Z = Z.Round(d), W = W.Round(d) };
public static Quat Slerp(Quat q1, Quat q2, float blend)
public static Quat Lerp(Quat left, Quat right, float blend) {
Quat x_t;
Quat y_t;
x_t = left;
y_t = right;
if (Dot(x_t, y_t) < 0.0f)
x_t = -x_t;
return (x_t * (1.0f - blend) + y_t * blend).Normalized;
}
public static Quat Slerp(Quat left, Quat right, float blend)
{
if (q1.LengthSquared == 0.0f)
return q2.LengthSquared == 0.0f ? Identity : q2;
else if (q2.LengthSquared == 0.0f)
return q1;
Quat x_t;
Quat y_t;
x_t = left;
y_t = right;
float cosHalfAngle = Vec4.Dot((Vec4)q1, (Vec4)q2);
if (cosHalfAngle >= 1.0f || cosHalfAngle <= -1.0f)
return q1;
if (cosHalfAngle < 0.0f)
float dot = Dot(x_t, y_t);
if (dot < 0.0f)
{
q2.XYZ = -q2.XYZ;
q2.W = -q2.W;
cosHalfAngle = -cosHalfAngle;
dot = -dot;
y_t = -y_t;
}
float blendA;
float blendB;
if (cosHalfAngle < 0.99f)
{
float halfAngle = (float)System.Math.Acos(cosHalfAngle);
float sinHalfAngle = (float)System.Math.Sin(halfAngle);
float oneOverSinHalfAngle = 1.0f / sinHalfAngle;
blendA = (float)System.Math.Sin(halfAngle * (1.0f - blend)) * oneOverSinHalfAngle;
blendB = (float)System.Math.Sin(halfAngle * blend) * oneOverSinHalfAngle;
}
else
{
blendA = 1.0f - blend;
blendB = blend;
}
if (1.0 - dot <= 0.08f)
return Lerp(x_t, y_t, blend);
Quat result = new Quat(blendA * q1.XYZ + blendB * q2.XYZ, blendA * q1.W + blendB * q2.W);
return result.Normalized;
dot = System.Math.Min(dot, 1.0f);
float theta = (float)System.Math.Acos(dot);
if (theta == 0.0f)
return x_t;
float st = 1.0f / (float)System.Math.Sin(theta);
float s0 = (float)System.Math.Sin((1.0f - blend) * theta) * st;
float s1 = (float)System.Math.Sin(theta * blend) * st;
return (x_t * s0 + y_t * s1).Normalized;
}
public static explicit operator Vec4(Quat quat) =>
@@ -169,7 +128,7 @@ namespace KKdBaseLib
public static explicit operator Quat(Vec4 vec) =>
new Quat( vec.XYZ, vec.W);
public bool Equals(Vec4 other) =>
public bool Equals(Quat other) =>
X == other.X && Y == other.Y && Z == other.Z && W == other.W;
public override bool Equals(object obj) => base.Equals(obj);
+2 -2
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@@ -1,4 +1,4 @@
namespace KKdBaseLib
namespace KKdBaseLib.Tables
{
public struct ButtonSE
{
@@ -190,6 +190,6 @@ namespace KKdBaseLib
}
public override string ToString() =>
$"{Year.ToString("d4")}-{Month.ToString("d2")}-{Day.ToString("d2")}";
$"{Year:d4}-{Month:d2}-{Day:d2}";
}
}
+1 -1
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@@ -11,7 +11,7 @@ namespace KKdBaseLib
[FieldOffset(0x0C)] public float W;
public Vec4(float val)
{ X = val; Y = val; Z = val; W = 0.0f; }
{ X = val; Y = val; Z = val; W = val; }
public Vec4(float X, float Y)
{ this.X = X; this.Y = Y; Z = 0.0f; W = 0.0f; }
+1369 -954
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-146
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@@ -1,146 +0,0 @@
using KKdBaseLib;
using KKdMainLib.IO;
namespace KKdMainLib
{
public unsafe struct AddParam : System.IDisposable
{
private long i;
private Stream _IO;
public HeaderData Header;
public void AddParamReader(string file)
{
Header = new HeaderData();
_IO = File.OpenReader(file + ".adp");
Header.Count = _IO.RI64();
Header.DataLength = _IO.RI64();
Header.DataOffset = _IO.RI64();
if (Header.Count < 1 || Header.DataOffset > _IO.P || Header.DataLength > _IO.LI64
- Header.DataOffset || Header.Count * 0x20 > _IO.LI64 - Header.DataOffset) { _IO.C(); return; }
Header.Data = new HeaderData.Sub[Header.Count];
byte[] data = _IO.RBy(Header.DataLength, Header.DataOffset);
_IO.C();
fixed (byte* ptr = data)
{
HeaderData.Sub* hPtr = (HeaderData.Sub*)ptr;
for (i = 0; i < Header.Count; i++)
Header.Data[i] = hPtr[i];
}
data = null;
}
public void AddParamWriter(string file)
{
if (Header.Data == null || Header.Data.LongLength < 1) return;
Header.Count = Header.Data.LongLength;
Header.DataLength = Header.Count * 0x20;
Header.DataOffset = 0x18L;
byte[] data = new byte[Header.DataLength];
fixed (byte* ptr = data)
{
HeaderData.Sub* hPtr = (HeaderData.Sub*)ptr;
for (i = 0; i < Header.Count; i++)
hPtr[i] = Header.Data[i];
}
_IO = File.OpenWriter(file + ".adp", true);
_IO.W(Header.Count);
_IO.W(Header.DataLength);
_IO.W(Header.DataOffset);
_IO.W(data);
_IO.C();
data = null;
}
public void MsgPackReader(string file, bool json)
{
Header = new HeaderData();
MsgPack addParam;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
if ((addParam = msgPack["AddParam", true]).IsNull) return;
Header.Count = addParam.Array.LongLength;
Header.Data = new HeaderData.Sub[Header.Count];
for (i = 0; i < Header.Count; i++)
{
ref HeaderData.Sub sub = ref Header.Data[i];
sub.Time = addParam[i].RF32("Time");
sub.Flags = addParam[i].RI32("Flags");
sub.Frame = addParam[i].RI32("Frame");
sub.ID = addParam[i].RI32("ID");
sub.Value = addParam[i].RF32("Value");
sub.PVBranch = addParam[i].RnI32("PVBranch") ?? 0;
float? f = addParam[i].RnF32("Value");
if (f.HasValue)
{
if (sub.ID == 0) { float v = 0; *(uint*)&v = addParam[i].RU32("Value"); sub.Value = v; }
else sub.Value = f.Value;
}
else { float v = 0; *(uint*)&v = 0xFFFFFFFF; sub.Value = v; }
}
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (Header.Data == null || Header.Data.LongLength < 1) return;
MsgPack addParam = new MsgPack(Header.Data.LongLength, "AddParam");
fixed (HeaderData.Sub* ptr = Header.Data)
for (i = 0; i < Header.Count; i++)
{
ref HeaderData.Sub sub = ref Header.Data[i];
addParam[i] = MsgPack.New.Add("Time", sub.Time).Add("Flags", sub.Flags).Add("Frame", sub.Frame);
if (sub.PVBranch > 0)
addParam[i] = addParam[i].Add("PVBranch", sub.PVBranch);
addParam[i] = addParam[i].Add("ID", sub.ID);
if (sub.ID == 0)
addParam[i] = addParam[i].Add("Value", *(uint*)&ptr[i].Value);
else if (*(uint*)&ptr[i].Value != 0xFFFFFFFF)
addParam[i] = addParam[i].Add("Value", sub.Value);
}
addParam.WriteAfterAll(true, file, json);
}
public void Dispose()
{ if (_IO != null) _IO.D(); _IO = null; Header = default; }
public struct HeaderData
{
public long Count;
public long DataLength;
public long DataOffset;
public Sub[] Data;
public struct Sub
{
public float Time;
public int Flags;
public int Frame;
public int Pad0C;
public int PVBranch;
public int ID;
public float Value;
public int Pad1C;
}
}
}
}
+655 -564
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+78 -78
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@@ -1,6 +1,5 @@
//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using System.Collections.Generic;
using KKdBaseLib;
using KKdMainLib.IO;
@@ -9,39 +8,39 @@ namespace KKdMainLib.DB
public class Aet : System.IDisposable
{
private int i, i0, i1, i2;
private Stream _IO;
private Stream s;
public AetSet[] AetSets;
public void BINReader(string file)
{
_IO = File.OpenReader(file + ".bin");
s = File.OpenReader(file + ".bin");
int aetSetsLength = _IO.RI32();
int aetSetsOffset = _IO.RI32();
int aetsLength = _IO.RI32();
int aetsOffset = _IO.RI32();
int aetSetsLength = s.RI32();
int aetSetsOffset = s.RI32();
int aetsLength = s.RI32();
int aetsOffset = s.RI32();
_IO.P = aetSetsOffset;
s.P = aetSetsOffset;
AetSets = new AetSet[aetSetsLength];
for (i = 0; i < aetSetsLength; i++)
{
AetSets[i].Id = _IO.RI32();
AetSets[i].Name = _IO.RSaO();
AetSets[i].FileName = _IO.RSaO();
_IO.RI32();
AetSets[i].SpriteSetId = _IO.RI32();
AetSets[i].Id = s.RI32();
AetSets[i].Name = s.RSaO();
AetSets[i].FileName = s.RSaO();
s.RI32();
AetSets[i].SpriteSetId = s.RI32();
}
int setIndex;
AET aet = new AET();
int[] AetCount = new int[aetSetsLength];
_IO.P = aetsOffset;
s.P = aetsOffset;
for (i = 0; i < aetsLength; i++)
{
_IO.PI64 += 10;
setIndex = _IO.RI16();
s.PI64 += 10;
setIndex = s.RI16();
AetCount[setIndex]++;
}
@@ -51,18 +50,18 @@ namespace KKdMainLib.DB
AetCount[i] = 0;
}
_IO.P = aetsOffset;
s.P = aetsOffset;
for (i = 0; i < aetsLength; i++)
{
aet.Id = _IO.RI32();
aet.Name = _IO.RSaO();
_IO.RI16();
setIndex = _IO.RI16();
aet.Id = s.RI32();
aet.Name = s.RSaO();
s.RI16();
setIndex = s.RI16();
AetSets[setIndex].Aets[AetCount[setIndex]] = aet; AetCount[setIndex]++;
}
_IO.C();
s.C();
}
@@ -71,13 +70,13 @@ namespace KKdMainLib.DB
if (AetSets == null) return;
if (AetSets.Length == 0) return;
List<string> SetName = new List<string>();
List<string> SetFileName = new List<string>();
KKdList<string> setName = KKdList<string>.New;
KKdList<string> setFileName = KKdList<string>.New;
List<int> Ids = new List<int>();
List<int> SetIds = new List<int>();
KKdList<int> ids = KKdList<int>.New;
KKdList<int> setIds = KKdList<int>.New;
List<int> NotAdd = new List<int>();
KKdList<int> notAdd = KKdList<int>.New;
AET temp;
AetSet set;
@@ -85,11 +84,11 @@ namespace KKdMainLib.DB
{
set = AetSets[i];
if (set. Name != null)
if (SetName .Contains(set. Name)) { NotAdd.Add(i); continue; }
else SetName .Add (set. Name);
if (setName .Contains(set. Name)) { notAdd.Add(i); continue; }
else setName .Add (set. Name);
if (set.FileName != null)
if (SetFileName.Contains(set.FileName)) { NotAdd.Add(i); continue; }
else SetFileName.Add (set.FileName);
if (setFileName.Contains(set.FileName)) { notAdd.Add(i); continue; }
else setFileName.Add (set.FileName);
if (set.NewId)
{
@@ -99,93 +98,94 @@ namespace KKdMainLib.DB
}
if (set.Id != null)
if (SetIds.Contains((int)set.Id)) { NotAdd.Add(i); continue; }
else SetIds.Add ((int)set.Id);
if (setIds.Contains((int)set.Id)) { notAdd.Add(i); continue; }
else setIds.Add ((int)set.Id);
for (i0 = 0; i0 < set.Aets.Length; i0++)
{
temp = set.Aets[i0];
if (temp.Id != null)
if ( Ids.Contains((int)temp.Id)) { NotAdd.Add(i); break; }
else Ids.Add ((int)temp.Id);
if ( ids.Contains((int)temp.Id)) { notAdd.Add(i); break; }
else ids.Add ((int)temp.Id);
}
}
SetName = null;
SetFileName = null;
setName .Dispose();
setFileName.Dispose();
for (i = 0; i < AetSets.Length; i++)
{
set = AetSets[i];
if (NotAdd.Contains(i)) continue;
if (notAdd.Contains(i)) continue;
if (!set.NewId) continue;
i1 = 0;
if (set.Id == null) while (true)
{ if (!SetIds.Contains(i1)) { AetSets[i].Id = i1; SetIds.Add(i1); break; } i1++; }
{ if (!setIds.Contains(i1)) { AetSets[i].Id = i1; setIds.Add(i1); break; } i1++; }
for (i0 = 0, i1 = 0; i0 < set.Aets.Length; i0++)
if (set.Aets[i0].Id == null) while (true) { if (!Ids.Contains(i1))
{ AetSets[i].Aets[i0].Id = i1; Ids.Add(i1); break; } i1++; }
if (set.Aets[i0].Id == null) while (true) { if (!ids.Contains(i1))
{ AetSets[i].Aets[i0].Id = i1; ids.Add(i1); break; } i1++; }
}
Ids = null;
SetIds = null;
ids.Dispose();
setIds.Dispose();
for (i = 0, i0 = 0, i2 = 0; i < AetSets.Length; i++)
if (!NotAdd.Contains(i)) { i0 += AetSets[i].Aets.Length; i2++; }
if (!notAdd.Contains(i)) { i0 += AetSets[i].Aets.Length; i2++; }
i1 = i0 * 12;
i1 = i1.A(0x20) + 0x20;
_IO = File.OpenWriter(file + ".bin", true);
_IO.W(i2);
_IO.W(i1);
_IO.W(i0);
_IO.W(0x20);
_IO.W(0x9066906690669066);
_IO.W(0x9066906690669066);
s = File.OpenWriter(file + ".bin", true);
s.W(i2);
s.W(i1);
s.W(i0);
s.W(0x20);
s.W(0x9066906690669066);
s.W(0x9066906690669066);
_IO.P = (i1 + i2 * 0x14).A(0x20);
s.P = (i1 + i2 * 0x14).A(0x20);
for (i = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) continue;
AetSets[i]. NameOffset = _IO.P; _IO.W(AetSets[i]. Name + "\0");
AetSets[i].FileNameOffset = _IO.P; _IO.W(AetSets[i].FileName + "\0");
if (notAdd.Contains(i)) continue;
AetSets[i]. NameOffset = s.P; s.W(AetSets[i]. Name + "\0");
AetSets[i].FileNameOffset = s.P; s.W(AetSets[i].FileName + "\0");
}
for (i = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) continue;
if (notAdd.Contains(i)) continue;
for (i0 = 0; i0 < AetSets[i].Aets.Length; i0++)
{ AetSets[i].Aets[i0].NameOffset = _IO.P; _IO.W(AetSets[i].Aets[i0].Name + "\0"); }
{ AetSets[i].Aets[i0].NameOffset = s.P; s.W(AetSets[i].Aets[i0].Name + "\0"); }
}
_IO.A(0x08, true);
s.A(0x08, true);
_IO.P = 0x20;
s.P = 0x20;
for (i = 0, i2 = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) { i2++; continue; }
if (notAdd.Contains(i)) { i2++; continue; }
for (i0 = 0; i0 < AetSets[i].Aets.Length; i0++)
{
_IO.W(AetSets[i].Aets[i0].Id );
_IO.W(AetSets[i].Aets[i0].NameOffset);
_IO.W((ushort) i0 );
_IO.W((ushort)(i - i2));
s.W(AetSets[i].Aets[i0].Id );
s.W(AetSets[i].Aets[i0].NameOffset);
s.W((ushort) i0 );
s.W((ushort)(i - i2));
}
}
_IO.A(0x20);
s.A(0x20);
for (i = 0, i2 = 0; i < AetSets.Length; i++)
{
if (NotAdd.Contains(i)) { i2++; continue; }
if (notAdd.Contains(i)) { i2++; continue; }
_IO.W(AetSets[i].Id );
_IO.W(AetSets[i]. NameOffset);
_IO.W(AetSets[i].FileNameOffset);
_IO.W(i - i2);
_IO.W(AetSets[i].SpriteSetId );
s.W(AetSets[i].Id );
s.W(AetSets[i]. NameOffset);
s.W(AetSets[i].FileNameOffset);
s.W(i - i2);
s.W(AetSets[i].SpriteSetId );
}
_IO.C();
notAdd.Dispose();
s.C();
}
public void MsgPackReader(string file, bool json)
@@ -213,12 +213,12 @@ namespace KKdMainLib.DB
for (i = 0; i < AetSets.Length; i++)
AetDB[i] = AetSets[i].WriteMsgPack();
AetDB.Write(true, file, json);
AetDB.Write(false, true, file, json);
}
private bool disposed = false;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; AetSets = null; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; AetSets = null; disposed = true; } }
public struct AET
{
@@ -246,10 +246,10 @@ namespace KKdMainLib.DB
public void ReadMsgPack(MsgPack msg)
{
FileName = msg.RS ("FileName" );
FileName = msg.RS ("FileName" );
Id = msg.RnU16( "Id");
Name = msg.RS ( "Name" );
NewId = msg.RB("NewId" );
Name = msg.RS ( "Name" );
NewId = msg.RB ("NewId" );
SpriteSetId = msg.RnU16("SpriteSetId");
MsgPack Temp;
+29 -22
View File
@@ -8,7 +8,7 @@ namespace KKdMainLib.DB
public class Auth : IDisposable
{
private int i;
private Stream _IO;
private Stream s;
public string[] Category;
public UID[] UIDs;
@@ -17,16 +17,16 @@ namespace KKdMainLib.DB
{
A3DADict dict = new A3DADict();
_IO = File.OpenReader(file + ".bin");
s = File.OpenReader(file + ".bin");
_IO.Format = Format.F;
int signature = _IO.RI32();
s.Format = Format.F;
int signature = s.RI32();
if (signature != 0x44334123) return;
signature = _IO.RI32();
signature = s.RI32();
if (signature != 0x5F5F5F41) return;
_IO.RI64();
s.RI64();
string[] strData = _IO.RS(_IO.L - _IO.P).Replace("\r\n", "\n").Replace("\r", "\n").Split('\n');
string[] strData = s.RS(s.L - s.P).Replace("\r\n", "\n").Replace("\r", "\n").Split('\n');
for (i = 0; i < strData.Length; i++)
dict.GD(strData[i]);
strData = null;
@@ -51,45 +51,52 @@ namespace KKdMainLib.DB
}
}
_IO.C();
s.C();
dict.Clear();
dict = null;
}
public void BINWriter(string file)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
_IO.W("#A3DA__________\n");
_IO.W("#" + DateTime.UtcNow.ToString("ddd MMM dd HH:mm:ss yyyy",
System.Globalization.CultureInfo.InvariantCulture) + "\n");
s.W("#A3DA__________\n");
s.W("# date time was eliminated.\n");
if (Category != null)
{
int[] so = Category.Length.SW();
for (i = 0; i < Category.Length; i++)
_IO.W($"category.{so[i]}.value={ Category[so[i]]}\n");
_IO.W($"category.length={Category.Length}\n");
s.W($"category.{so[i]}.value={ Category[so[i]]}\n");
s.W($"category.length={Category.Length}\n");
}
if (UIDs != null)
{
int[] so = UIDs.Length.SW();
int max = -1;
for (i = 0; i < UIDs.Length; i++)
{
if (UIDs[so[i]].Category != null && UIDs[so[i]].Category != "")
_IO.W($"uid.{so[i]}.category=" + UIDs[so[i]].Category + "\n");
s.W($"uid.{so[i]}.category=" + UIDs[so[i]].Category + "\n");
if (UIDs[so[i]].OrgUid != null)
_IO.W($"uid.{so[i]}.org_uid=" + UIDs[so[i]].OrgUid + "\n");
{
int orgUid = UIDs[so[i]].OrgUid.Value;
s.W($"uid.{so[i]}.org_uid=" + orgUid + "\n");
if (max < orgUid)
max = orgUid;
}
if (UIDs[so[i]].Size != null)
_IO.W($"uid.{so[i]}.size=" + UIDs[so[i]].Size + "\n");
s.W($"uid.{so[i]}.size=" + UIDs[so[i]].Size + "\n");
if (UIDs[so[i]].Value != null && UIDs[so[i]].Value != "")
_IO.W($"uid.{so[i]}.value=" + UIDs[so[i]].Value + "\n");
s.W($"uid.{so[i]}.value=" + UIDs[so[i]].Value + "\n");
}
_IO.W($"uid.length={UIDs.Length}\n");
s.W($"uid.length={UIDs.Length}\n");
if (max != -1)
s.W($"uid.max={max}\n");
}
_IO.C();
s.C();
}
public void MsgPackReader(string file, bool json)
@@ -146,12 +153,12 @@ namespace KKdMainLib.DB
authDB.Add(uid);
}
authDB.Write(true, file, json);
authDB.Write(false, true, file, json);
}
private bool disposed = false;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; Category = null; UIDs = null; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; Category = null; UIDs = null; disposed = true; } }
public struct UID
{
+63 -66
View File
@@ -1,6 +1,5 @@
//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using System.Collections.Generic;
using KKdBaseLib;
using KKdMainLib.IO;
@@ -9,27 +8,27 @@ namespace KKdMainLib.DB
public class Spr : System.IDisposable
{
private int i, i0, i1, i2;
private Stream _IO;
private Stream s;
public SpriteSet[] SpriteSets;
public void BINReader(string file)
{
_IO = File.OpenReader(file + ".bin");
s = File.OpenReader(file + ".bin");
int spriteSetsLength = _IO.RI32();
int spriteSetsOffset = _IO.RI32();
int spritesLength = _IO.RI32();
int spritesOffset = _IO.RI32();
int spriteSetsLength = s.RI32();
int spriteSetsOffset = s.RI32();
int spritesLength = s.RI32();
int spritesOffset = s.RI32();
_IO.P = spriteSetsOffset;
s.P = spriteSetsOffset;
SpriteSets = new SpriteSet[spriteSetsLength];
for (i = 0; i < spriteSetsLength; i++)
{
SpriteSets[i].Id = _IO.RI32();
SpriteSets[i].Name = _IO.RSaO();
SpriteSets[i].FileName = _IO.RSaO();
_IO.RI32();
SpriteSets[i].Id = s.RI32();
SpriteSets[i].Name = s.RSaO();
SpriteSets[i].FileName = s.RSaO();
s.RI32();
}
int setIndex;
@@ -38,11 +37,11 @@ namespace KKdMainLib.DB
int[] sprCount = new int[spriteSetsLength];
int[] texCount = new int[spriteSetsLength];
_IO.P = spritesOffset;
s.P = spritesOffset;
for (i = 0; i < spritesLength; i++)
{
_IO.PI64 += 10;
setIndex = _IO.RI16();
s.PI64 += 10;
setIndex = s.RI16();
isTexture = (setIndex & 0x1000) == 0x1000;
setIndex &= 0xFFF;
@@ -59,13 +58,13 @@ namespace KKdMainLib.DB
texCount[i] = 0;
}
_IO.P = spritesOffset;
s.P = spritesOffset;
for (i = 0; i < spritesLength; i++)
{
st.Id = _IO.RI32();
st.Name = _IO.RSaO();
_IO.RI16();
setIndex = _IO.RI16();
st.Id = s.RI32();
st.Name = s.RSaO();
s.RI16();
setIndex = s.RI16();
isTexture = (setIndex & 0x1000) == 0x1000;
setIndex &= 0xFFF;
@@ -73,7 +72,7 @@ namespace KKdMainLib.DB
else { SpriteSets[setIndex]. Sprites[sprCount[setIndex]] = st; sprCount[setIndex]++; }
}
_IO.C();
s.C();
}
public void BINWriter(string file)
@@ -81,13 +80,13 @@ namespace KKdMainLib.DB
if (SpriteSets == null) return;
if (SpriteSets.Length == 0) return;
List<string> setName = new List<string>();
List<string> setFileName = new List<string>();
KKdList<string> setName = KKdList<string>.New;
KKdList<string> setFileName = KKdList<string>.New;
List<int> ids = new List<int>();
List<int> setIds = new List<int>();
KKdList<int> ids = KKdList<int>.New;
KKdList<int> setIds = KKdList<int>.New;
List<int> notAdd = new List<int>();
KKdList<int> notAdd = KKdList<int>.New;
SpriteTexture temp;
SpriteSet set;
@@ -130,8 +129,8 @@ namespace KKdMainLib.DB
else ids.Add ((int)temp.Id);
}
}
setName = null;
setFileName = null;
setName .Dispose();
setFileName.Dispose();
for (i = 0; i < SpriteSets.Length; i++)
{
@@ -151,11 +150,8 @@ namespace KKdMainLib.DB
while (set. Sprites[i0].Id == null)
if (!ids.Contains(i1)) ids.Add((int)(SpriteSets[i]. Sprites[i0].Id = i1)); else i1++;
}
ids = null;
setIds = null;
ids.Dispose();
setIds.Dispose();
for (i = 0, i0 = 0, i2 = 0; i < SpriteSets.Length; i++)
if (!notAdd.Contains(i)) { i0 += SpriteSets[i].Sprites.Length + SpriteSets[i].Textures.Length; i2++; }
@@ -163,68 +159,69 @@ namespace KKdMainLib.DB
i1 = i0 * 12;
i1 = i1.A(0x20) + 0x20;
_IO = File.OpenWriter(file + ".bin", true);
_IO.W(i2);
_IO.W(i1);
_IO.W(i0);
_IO.W(0x20);
_IO.W(0x9066906690669066);
_IO.W(0x9066906690669066);
s = File.OpenWriter(file + ".bin", true);
s.W(i2);
s.W(i1);
s.W(i0);
s.W(0x20);
s.W(0x9066906690669066);
s.W(0x9066906690669066);
_IO.P = (i1 + i2 * 0x10).A(0x20);
s.P = (i1 + i2 * 0x10).A(0x20);
for (i = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) continue;
for (i0 = 0; i0 < SpriteSets[i].Textures.Length; i0++)
{ SpriteSets[i].Textures[i0].NameOffset = _IO.P;
_IO.W(SpriteSets[i].Textures[i0].Name + "\0"); }
{ SpriteSets[i].Textures[i0].NameOffset = s.P;
s.W(SpriteSets[i].Textures[i0].Name + "\0"); }
for (i0 = 0; i0 < SpriteSets[i]. Sprites.Length; i0++)
{ SpriteSets[i]. Sprites[i0].NameOffset = _IO.P;
_IO.W(SpriteSets[i]. Sprites[i0].Name + "\0"); }
{ SpriteSets[i]. Sprites[i0].NameOffset = s.P;
s.W(SpriteSets[i]. Sprites[i0].Name + "\0"); }
}
for (i = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) continue;
SpriteSets[i]. NameOffset = _IO.P; _IO.W(SpriteSets[i]. Name + "\0");
SpriteSets[i].FileNameOffset = _IO.P; _IO.W(SpriteSets[i].FileName + "\0");
SpriteSets[i]. NameOffset = s.P; s.W(SpriteSets[i]. Name + "\0");
SpriteSets[i].FileNameOffset = s.P; s.W(SpriteSets[i].FileName + "\0");
}
s.A(0x08, true);
_IO.A(0x08, true);
_IO.P = 0x20;
s.P = 0x20;
for (i = 0, i2 = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) { i2++; continue; }
for (i0 = 0; i0 < SpriteSets[i].Textures.Length; i0++)
{
_IO.W(SpriteSets[i].Textures[i0].Id );
_IO.W(SpriteSets[i].Textures[i0].NameOffset);
_IO.W((ushort) i0 );
_IO.W((ushort)(0x1000 | (i - i2)));
s.W(SpriteSets[i].Textures[i0].Id );
s.W(SpriteSets[i].Textures[i0].NameOffset);
s.W((ushort) i0 );
s.W((ushort)(0x1000 | (i - i2)));
}
for (i0 = 0; i0 < SpriteSets[i]. Sprites.Length; i0++)
{
_IO.W(SpriteSets[i]. Sprites[i0].Id );
_IO.W(SpriteSets[i]. Sprites[i0].NameOffset);
_IO.W((ushort) i0 );
_IO.W((ushort)(i - i2));
s.W(SpriteSets[i]. Sprites[i0].Id );
s.W(SpriteSets[i]. Sprites[i0].NameOffset);
s.W((ushort) i0 );
s.W((ushort)(i - i2));
}
}
_IO.A(0x20);
s.A(0x20);
for (i = 0, i2 = 0; i < SpriteSets.Length; i++)
{
if (notAdd.Contains(i)) { i2++; continue; }
_IO.W(SpriteSets[i].Id );
_IO.W(SpriteSets[i]. NameOffset);
_IO.W(SpriteSets[i].FileNameOffset);
_IO.W(i - i2);
s.W(SpriteSets[i].Id );
s.W(SpriteSets[i]. NameOffset);
s.W(SpriteSets[i].FileNameOffset);
s.W(i - i2);
}
_IO.C();
notAdd.Dispose();
s.C();
}
public void MsgPackReader(string file, bool json = false)
@@ -251,12 +248,12 @@ namespace KKdMainLib.DB
for (i = 0; i < SpriteSets.Length; i++)
sprDB[i] = SpriteSets[i].WriteMsgPack();
sprDB.Write(true, file, json);
sprDB.Write(false, true, file, json);
}
private bool disposed = false;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; SpriteSets = null; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; SpriteSets = null; disposed = true; } }
public struct SpriteTexture
{
+124 -120
View File
@@ -8,7 +8,7 @@ namespace KKdMainLib
{
private int i, i0, i1;
private Header header;
private Stream _IO;
private Stream s;
public EXP[] Dex;
@@ -16,63 +16,64 @@ namespace KKdMainLib
{
Dex = null;
header = new Header();
_IO = File.OpenReader(filepath + ext);
s = File.OpenReader(filepath + ext);
header.Format = Format.F;
header.SectionSignature = _IO.RI32();
if (header.SectionSignature == 0x43505845)
header = _IO.ReadHeader(true, true);
if (header.SectionSignature != 0x64) return;
uint signature = s.RU32();
if (signature == 0x43505845) { header = s.ReadHeader(true); signature = s.RU32(); }
if (signature != 0x64) return;
_IO.O = _IO.P - 0x4;
Dex = new EXP[_IO.RI32()];
int DEXOffset = _IO.RI32();
int DEXNameOffset = _IO.RI32();
if (DEXNameOffset == 0x00) { _IO.Format = header.Format = Format.X; DEXNameOffset = (int)_IO.RIX(); }
s.O = s.P - 0x4;
Dex = new EXP[s.RI32()];
int DEXOffset = s.RI32();
int DEXNameOffset = s.RI32();
if (DEXNameOffset == 0x00) { s.Format = header.Format = Format.X; DEXNameOffset = (int)s.RIX(); }
_IO.P = DEXOffset;
s.P = DEXOffset;
for (i = 0; i < Dex.Length; i++)
{
Dex[i].MainOffset = (int)_IO.RIX();
Dex[i].EyesOffset = (int)_IO.RIX();
Dex[i].FaceOffset = s.RIX();
Dex[i].FaceCLOffset = s.RIX();
}
_IO.P = DEXNameOffset;
s.P = DEXNameOffset;
for (i = 0; i < Dex.Length; i++)
Dex[i].NameOffset = (int)_IO.RIX();
Dex[i].NameOffset = s.RIX();
for (i = 0; i < Dex.Length; i++)
{
EXPElement element = new EXPElement();
Dex[i].Main = KKdList<EXPElement>.New;
_IO.P = Dex[i].MainOffset;
EXPData element = new EXPData();
Dex[i].Face = KKdList<EXPData>.New;
s.PI64 = Dex[i].FaceOffset;
while (true)
{
element.Frame = _IO.RF32();
element.Both = _IO.RU16();
element.ID = _IO.RU16();
element.Value = _IO.RF32();
element.Trans = _IO.RF32();
if (element.Frame == 999999 || element.Both == 0xFFFF) break;
Dex[i].Main.Add(element);
element.Frame = s.RF32();
element.Type = s.RU16();
element.ID = s.RU16();
element.Value = s.RF32();
element.Trans = s.RF32();
if (element.Type == 0xFFFF) break;
Dex[i].Face.Add(element);
}
Dex[i].Face.Capacity = Dex[i].Face.Count;
Dex[i].Eyes = KKdList<EXPElement>.New;
_IO.P = Dex[i].EyesOffset;
Dex[i].FaceCL = KKdList<EXPData>.New;
s.PI64 = Dex[i].FaceCLOffset;
while(true)
{
element.Frame = _IO.RF32();
element.Both = _IO.RU16();
element.ID = _IO.RU16();
element.Value = _IO.RF32();
element.Trans = _IO.RF32();
if (element.Frame == 999999 || element.Both == 0xFFFF) break;
Dex[i].Eyes.Add(element);
element.Frame = s.RF32();
element.Type = s.RU16();
element.ID = s.RU16();
element.Value = s.RF32();
element.Trans = s.RF32();
if (element.Type == 0xFFFF) break;
Dex[i].FaceCL.Add(element);
}
Dex[i].FaceCL.Capacity = Dex[i].FaceCL.Count;
Dex[i].Name = _IO.RSaO(Dex[i].NameOffset);
Dex[i].Name = s.RSaO(Dex[i].NameOffset);
}
_IO.C();
s.C();
}
public void DEXWriter(string filepath, Format format)
@@ -80,86 +81,89 @@ namespace KKdMainLib
if (Dex == null || Dex.Length < 1) return;
header = new Header();
_IO = File.OpenWriter(filepath + (format > Format.F && format < Format.FT ? ".dex" : ".bin"), true);
header.Format = _IO.Format = format;
s = File.OpenWriter(filepath + (format > Format.F && format < Format.FT ? ".dex" : ".bin"), true);
header.Format = s.Format = format;
_IO.O = format > Format.F ? 0x20 : 0;
_IO.W(0x64);
_IO.W(Dex.Length);
s.Format = format;
s.O = format > Format.F ? 0x20 : 0;
s.P = 0;
s.W(0x64);
s.W(Dex.Length);
_IO.WX(header.IsX ? 0x28 : 0x20);
_IO.WX(0x00);
s.WX(header.IsX ? 0x28 : 0x20);
s.WX(0x00);
int Position0 = _IO.P;
_IO.W(0x00L);
_IO.W(0x00L);
int Position0 = s.P;
s.W(0x00L);
s.W(0x00L);
for (i = 0; i < Dex.Length * 3; i++) _IO.WX(0x00);
_IO.A(0x20);
for (i = 0; i < Dex.Length * 3; i++) s.WX(0x00);
s.A(0x20);
for (i0 = 0; i0 < Dex.Length; i0++)
{
Dex[i0].MainOffset = _IO.P;
for (i1 = 0; i1 < Dex[i0].Main.Count; i1++)
Dex[i0].FaceOffset = s.P;
for (i1 = 0; i1 < Dex[i0].Face.Count; i1++)
{
_IO.W(Dex[i0].Main[i1].Frame);
_IO.W(Dex[i0].Main[i1].Both );
_IO.W(Dex[i0].Main[i1].ID );
_IO.W(Dex[i0].Main[i1].Value);
_IO.W(Dex[i0].Main[i1].Trans);
s.W(Dex[i0].Face[i1].Frame);
s.W(Dex[i0].Face[i1].Type );
s.W(Dex[i0].Face[i1].ID );
s.W(Dex[i0].Face[i1].Value);
s.W(Dex[i0].Face[i1].Trans);
}
_IO.W(999999f);
_IO.W(0xFFFF);
_IO.W(0x0L);
_IO.A(0x20);
s.W(999999.0f);
s.W(0xFFFF);
s.W(0x0L);
s.A(0x20);
Dex[i0].EyesOffset = _IO.P;
for (i1 = 0; i1 < Dex[i0].Eyes.Count; i1++)
Dex[i0].FaceCLOffset = s.P;
for (i1 = 0; i1 < Dex[i0].FaceCL.Count; i1++)
{
_IO.W(Dex[i0].Eyes[i1].Frame);
_IO.W(Dex[i0].Eyes[i1].Both );
_IO.W(Dex[i0].Eyes[i1].ID );
_IO.W(Dex[i0].Eyes[i1].Value);
_IO.W(Dex[i0].Eyes[i1].Trans);
s.W(Dex[i0].FaceCL[i1].Frame);
s.W(Dex[i0].FaceCL[i1].Type );
s.W(Dex[i0].FaceCL[i1].ID );
s.W(Dex[i0].FaceCL[i1].Value);
s.W(Dex[i0].FaceCL[i1].Trans);
}
_IO.W(999999f);
_IO.W(0xFFFF);
_IO.W(0x0L);
_IO.A(0x20);
s.W(999999.0f);
s.W(0xFFFF);
s.W(0x0L);
s.A(0x20);
}
for (i = 0; i < Dex.Length; i++)
{
Dex[i].NameOffset = _IO.P;
_IO.W(Dex[i].Name + "\0");
Dex[i].NameOffset = s.P;
s.W(Dex[i].Name + "\0");
}
_IO.A(0x10, true);
s.A(0x10, true);
_IO.P = header.IsX ? 0x28 : 0x20;
s.P = header.IsX ? 0x28 : 0x20;
for (i = 0; i < Dex.Length; i++)
{
_IO.WX(Dex[i].MainOffset);
_IO.WX(Dex[i].EyesOffset);
s.WX(Dex[i].FaceOffset);
s.WX(Dex[i].FaceCLOffset);
}
int namesPosition = _IO.P;
int namesPosition = s.P;
for (i = 0; i < Dex.Length; i++)
_IO.WX(Dex[i].NameOffset);
s.WX(Dex[i].NameOffset);
_IO.P = Position0 - (header.IsX ? 8 : 4);
_IO.W(namesPosition);
s.P = Position0 - (header.IsX ? 8 : 4);
s.W(namesPosition);
if (format > Format.F)
{
int offset = _IO.L;
_IO.O = 0;
_IO.P = _IO.L;
_IO.WEOFC(0);
_IO.P = 0;
uint offset = s.LU32;
s.O = 0;
s.P = s.L;
s.WEOFC(0);
s.P = 0;
header.DataSize = offset;
header.SectionSize = offset;
header.Signature = 0x43505845;
_IO.W(header, true);
header.UseSectionSize = true;
s.W(header);
}
_IO.C();
s.C();
}
public void MsgPackReader(string file, bool json)
@@ -177,19 +181,19 @@ namespace KKdMainLib
Dex[i0] = new EXP { Name = dex[i0].RS("Name") };
MsgPack temp;
if ((temp = dex[i0]["Main", true]).NotNull)
if ((temp = dex[i0]["Face", true]).NotNull)
{
Dex[i0].Main = KKdList<EXPElement>.New;
Dex[i0].Main.Capacity = temp.Array.Length;
for (i1 = 0; i1 < Dex[i0].Main.Capacity; i1++)
Dex[i0].Main.Add(EXPElement.Read(temp[i1]));
Dex[i0].Face = KKdList<EXPData>.New;
Dex[i0].Face.Capacity = temp.Array.Length;
for (i1 = 0; i1 < Dex[i0].Face.Capacity; i1++)
Dex[i0].Face.Add(EXPData.Read(temp[i1]));
}
if ((temp = dex[i0]["Eyes", true]).NotNull)
if ((temp = dex[i0]["FaceCL", true]).NotNull)
{
Dex[i0].Eyes = KKdList<EXPElement>.New;
Dex[i0].Eyes.Capacity = temp.Array.Length;
for (i1 = 0; i1 < this.Dex[i0].Eyes.Capacity; i1++)
Dex[i0].Eyes.Add(EXPElement.Read(temp[i1]));
Dex[i0].FaceCL = KKdList<EXPData>.New;
Dex[i0].FaceCL.Capacity = temp.Array.Length;
for (i1 = 0; i1 < Dex[i0].FaceCL.Capacity; i1++)
Dex[i0].FaceCL.Add(EXPData.Read(temp[i1]));
}
temp.Dispose();
}
@@ -206,54 +210,54 @@ namespace KKdMainLib
for (i0 = 0; i0 < Dex.Length; i0++)
{
MsgPack exp = MsgPack.New.Add("Name", Dex[i0].Name);
MsgPack main = new MsgPack(Dex[i0].Main.Count, "Main");
for (i1 = 0; i1 < Dex[i0].Main.Count; i1++)
main[i1] = Dex[i0].Main[i1].Write();
MsgPack main = new MsgPack(Dex[i0].Face.Count, "Face");
for (i1 = 0; i1 < Dex[i0].Face.Count; i1++)
main[i1] = Dex[i0].Face[i1].Write();
exp.Add(main);
MsgPack eyes = new MsgPack(Dex[i0].Eyes.Count, "Eyes");
for (i1 = 0; i1 < Dex[i0].Eyes.Count; i1++)
eyes[i1] = Dex[i0].Eyes[i1].Write();
MsgPack eyes = new MsgPack(Dex[i0].FaceCL.Count, "FaceCL");
for (i1 = 0; i1 < Dex[i0].FaceCL.Count; i1++)
eyes[i1] = Dex[i0].FaceCL[i1].Write();
exp.Add(eyes);
dex[i0] = exp;
}
dex.Write(true, file, json);
dex.Write(false, true, file, json);
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; Dex = null; header = default; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; Dex = null; header = default; disposed = true; } }
public struct EXP
{
public int MainOffset;
public int EyesOffset;
public int NameOffset;
public long FaceOffset;
public long FaceCLOffset;
public long NameOffset;
public string Name;
public KKdList<EXPElement> Main;
public KKdList<EXPElement> Eyes;
public KKdList<EXPData> Face;
public KKdList<EXPData> FaceCL;
public override string ToString() => Name;
}
public struct EXPElement
public struct EXPData
{
public float Frame;
public ushort Both;
public ushort Type;
public ushort ID;
public float Value;
public float Trans;
public static EXPElement Read(MsgPack msg) =>
new EXPElement() { Frame = msg.RF32("F"), Both = msg.RU16("B"),
ID = msg.RU16("I"), Value = msg.RF32("V"),
Trans = msg.RF32("T"), };
public static EXPData Read(MsgPack msg) =>
new EXPData() { Frame = msg.RF32("Frame"), Type = msg.RU16("Type" ),
ID = msg.RU16("ID" ), Value = msg.RF32("Value"),
Trans = msg.RF32("Trans"), };
public MsgPack Write() =>
MsgPack.New.Add("F", Frame).Add("B", Both )
.Add("I", ID).Add("V", Value)
.Add("T", Trans);
MsgPack.New.Add("Frame", Frame).Add("Type" , Type )
.Add("ID" , ID ).Add("Value", Value)
.Add("Trans", Trans);
}
}
}
+61 -7
View File
@@ -8,17 +8,15 @@ namespace KKdMainLib
{
public static class DIVAFILE
{
private static readonly byte[] Key = new byte[]
{ 0x66, 0x69, 0x6C, 0x65, 0x20, 0x61, 0x63, 0x63,
0x65, 0x73, 0x73, 0x20, 0x64, 0x65, 0x6E, 0x79 };
private static readonly byte[] Key = "file access deny".ToASCII();
public static void Decrypt(this string file)
public static void Decrypt(string file)
{
int streamLength, fileLength;
byte[] encrypted, decrypted;
using (Stream _IO = File.OpenReader(file))
{
if (_IO.RI64() != 0x454C494641564944) return;
if (_IO.RU64() != 0x454C494641564944u) return;
streamLength = _IO.RI32();
fileLength = _IO.RI32();
@@ -39,7 +37,7 @@ namespace KKdMainLib
_IO.W(decrypted, fileLength < streamLength ? fileLength : streamLength);
}
public static void Encrypt(this string file)
public static void Encrypt(string file)
{
byte[] data;
using (Stream _IO = File.OpenReader(file))
@@ -62,11 +60,67 @@ namespace KKdMainLib
using (Stream _IO = File.OpenWriter(file, dataAlign.Length))
{
_IO.W(0x454C494641564944);
_IO.W(0x454C494641564944u);
_IO.W(fileLength);
_IO.W(fileLengthOrigin);
_IO.W(encrypted);
}
}
public static byte[] Decrypt(byte[] data)
{
int streamLength, fileLength;
byte[] encrypted, decrypted;
using (Stream _IO = File.OpenReader(data))
{
if (_IO.RU64() != 0x454C494641564944u) return data;
streamLength = _IO.RI32();
fileLength = _IO.RI32();
encrypted = _IO.RBy(streamLength);
decrypted = new byte[streamLength];
}
using (AesManaged crypto = new AesManaged())
{
crypto.Key = Key; crypto.IV = new byte[16];
crypto.Mode = CipherMode.ECB; crypto.Padding = PaddingMode.Zeros;
using CryptoStream cryptoData = new CryptoStream(new MSIO.MemoryStream(encrypted),
crypto.CreateDecryptor(crypto.Key, crypto.IV), CryptoStreamMode.Read);
cryptoData.Read(decrypted, 0, streamLength);
}
data = new byte[fileLength];
Array.Copy(decrypted, data, fileLength < streamLength ? fileLength : streamLength);
return data;
}
public static byte[] Encrypt(byte[] data)
{
int fileLengthOrigin = data.Length;
int fileLength = fileLengthOrigin.A(16);
byte[] dataAlign = new byte[fileLength];
Array.Copy(data, dataAlign, data.Length);
data = null;
byte[] encrypted = new byte[fileLength];
using (AesManaged crypto = new AesManaged())
{
crypto.Key = Key; crypto.IV = new byte[16];
crypto.Mode = CipherMode.ECB; crypto.Padding = PaddingMode.Zeros;
using CryptoStream cryptoData = new CryptoStream(new MSIO.MemoryStream(dataAlign),
crypto.CreateEncryptor(crypto.Key, crypto.IV), CryptoStreamMode.Read);
cryptoData.Read(encrypted, 0, fileLength);
}
using (Stream _IO = File.OpenWriter())
{
_IO.W(0x454C494641564944u);
_IO.W(fileLength);
_IO.W(fileLengthOrigin);
_IO.W(encrypted);
data = _IO.ToArray();
}
return data;
}
}
}
+109 -64
View File
@@ -7,9 +7,10 @@ namespace KKdMainLib
{
public struct DataBank : IDisposable
{
private Stream _IO;
private int i;
private Stream s;
public bool pvListPDA;
public PvList[] pvList;
public PsrData[] psrData;
@@ -20,6 +21,7 @@ namespace KKdMainLib
public void DBReader(string file)
{
pvListPDA = false;
Success = false;
if (!File.Exists(file)) return;
string text = File.ReadAllText(file);
@@ -28,51 +30,73 @@ namespace KKdMainLib
pvList = null;
psrData = null;
if (file.Contains("psrData") && array.Length % 13 < 2)
if (file.Contains("psrData") && array.Length % 13 == 0)
{
psrData = new PsrData[array.Length / 13];
for (i = 0; i < psrData.Length; i++) psrData[i].SetValue(array, i);
Success = true;
}
else if (file.Contains("psrData")) Success = true;
else if (file.Contains("PvList") && array.Length % 7 < 2)
else if (file.Contains("PvList") && (array.Length % 7 == 0 || array.Length % 6 == 0))
{
pvList = new PvList[array.Length / 7];
for (i = 0; i < pvList.Length; i++) pvList[i].SetValue(array, i);
if (array[2] != "0" && array[2] != "1")
{
pvListPDA = true;
pvList = new PvList[array.Length / 6];
for (i = 0; i < pvList.Length; i++) pvList[i].SetValue(array, i, true);
}
else
{
pvList = new PvList[array.Length / 7];
for (i = 0; i < pvList.Length; i++) pvList[i].SetValue(array, i, false);
}
Success = true;
}
else if (file.Contains("PvList")) Success = true;
}
public void DBWriter(string file, uint num2)
public byte[] DBWriter(string file)
{
if (!Success) return;
if (!Success) return null;
_IO = File.OpenWriter();
s = File.OpenWriter();
if (file.Contains("psrData"))
{
if (psrData != null && psrData.Length > 0)
for (i = 0; i < psrData.Length; i++)
_IO.W(psrData[i].ToString() + c);
if (psrData[i].PV_ID == 92)
s.W(psrData[i].ToString() + c);
else
s.W(psrData[i].ToString() + c);
}
else if (file.Contains("PvList"))
{
if (pvList != null && pvList.Length > 0)
{
for (i = 0; i < pvList.Length - 1; i++)
_IO.W(UrlEncode(pvList[i].ToString() + c));
_IO.W(UrlEncode(pvList[i].ToString()));
s.W(UrlEncode(pvList[i].ToString(pvListPDA) + c));
s.W(UrlEncode(pvList[i].ToString(pvListPDA)));
}
else _IO.W("%2A%2A%2A");
else s.W("%2A%2A%2A");
}
byte[] data = _IO.ToArray(true);
ushort num = DCC.CalculateChecksum(data);
File.WriteAllBytes(file + "_" + num + "_" + num2 + ".dat", data);
return s.ToArray(true);
}
public void DBWriter(string file, uint timestamp)
{
if (!Success) return;
byte[] data = DBWriter(file);
if (data == null) return;
ushort hash = data.HashCRC16_CCITT();
File.WriteAllBytes(file + "_" + hash + "_" + timestamp + ".dat", data);
}
public void MsgPackReader(string file, bool json)
{
pvListPDA = false;
Success = false;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
bool compact = msgPack.RB("Compact");
@@ -100,6 +124,13 @@ namespace KKdMainLib
for (i = 0; i < this.pvList.Length; i++)
this.pvList[i].SetValue(pvList[i], compact);
}
else if ((pvList = msgPack["PvListPDA", true]).NotNull)
{
pvListPDA = true;
this.pvList = new PvList[pvList.Array.Length];
for (i = 0; i < this.pvList.Length; i++)
this.pvList[i].SetValue(pvList[i], compact);
}
Success = true;
pvList.Dispose();
}
@@ -127,22 +158,22 @@ namespace KKdMainLib
if (pvList != null)
{msgPack.Add("Compact", true);
MsgPack PvList = new MsgPack(pvList.Length, "PvList");
MsgPack PvList = new MsgPack(pvList.Length, pvListPDA ? "PvListPDA" : "PvList");
for (i = 0; i < pvList.Length; i++) PvList[i] = pvList[i].WriteMP();
msgPack.Add(PvList);
}
else msgPack.Add(new MsgPack("PvList", null));
else msgPack.Add(new MsgPack(pvListPDA ? "PvListPDA" : "PvList", null));
}
msgPack.Write(file, json).Dispose();
msgPack.Write(file, false, json).Dispose();
}
public static string UrlEncode(string value) =>
WebUtility.UrlEncode(value).Replace("+", "%20");
WebUtility.UrlEncode(value).Replace("+", "%20").Replace("!", "%21").Replace("*", "%2A");
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; psrData = null;
pvList = null; Success = false; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; psrData = null;
pvList = null; pvListPDA = false; Success = false; disposed = true; } }
public struct PsrData
{
@@ -166,9 +197,9 @@ namespace KKdMainLib
else { id = msg.RnI32("ID"); if (id != null) PV_ID = (int)id; }
MsgPack temp;
if ((temp = msg["P1", true]).NotNull) p1.SetValue(temp);
if ((temp = msg["P2", true]).NotNull) p2.SetValue(temp);
if ((temp = msg["P3", true]).NotNull) p3.SetValue(temp);
if ((temp = msg["P1"]).NotNull) p1.SetValue(temp);
if ((temp = msg["P2"]).NotNull) p2.SetValue(temp);
if ((temp = msg["P3"]).NotNull) p3.SetValue(temp);
temp.Dispose();
}
@@ -177,35 +208,35 @@ namespace KKdMainLib
.Add(p2.WriteMP("P2")).Add(p3.WriteMP("P3"));
public override string ToString() =>
UrlEncode($"{p1.ToString()},{p2.ToString()},{p3.ToString()},{PV_ID}");
UrlEncode($"{p1},{p2},{p3},{PV_ID}");
}
public struct Player
{
public int Score0;
public int Score1;
public string Name0;
public string Name1;
public string Name;
public string NameExtra;
public int Score;
public int ScoreExtra;
public Difficulty Diff;
public bool Has2P => Name1 != null;
public bool HasExtra => NameExtra != null;
public void SetValue(string[] data, int i = 0, int offset = 0)
{
string[] array = data[i * 13 + offset * 4].Split('.');
Score0 = int.Parse(array[0]);
if (array.Length > 1) Score1 = int.Parse(array[1]);
Score = int.Parse(array[0]);
if (array.Length > 1) ScoreExtra = int.Parse(array[1]);
string text = "";
for (int j = 0; j < data[i * 13 + 1 + offset * 4].Length; j++)
{
text += data[i * 13 + 1 + offset * 4][j].ToString();
if (text.EndsWith("xxx"))
{
Name0 = text.Remove(text.Length - 3);
Name = text.Remove(text.Length - 3);
text = "";
}
}
if (array.Length == 1) Name0 = text;
else Name1 = text;
if (array.Length == 1) Name = text;
else NameExtra = text;
if (int.TryParse(data[i * 13 + 2 + offset * 4], out int Diff))
this.Diff = (Difficulty)Diff;
else
@@ -215,28 +246,29 @@ namespace KKdMainLib
public void SetValue(MsgPack msg)
{
Diff = (Difficulty)msg.RI32("Diff");
Score0 = msg.RI32 ("Score");
Name0 = msg.RS( "Name");
if (Name0 == null)
Name = msg.RS ( "Name");
NameExtra = msg.RS ( "NameExtra");
Score = msg.RI32("Score");
ScoreExtra = msg.RI32("ScoreExtra");
if (Name == null)
{
Score0 = msg.RI32("Score0");
Score1 = msg.RI32("Score1");
Name0 = msg.RS ( "Name0");
Name1 = msg.RS ( "Name1");
Name = msg.RS ( "Name0");
NameExtra = msg.RS ( "Name1");
Score = msg.RI32("Score0");
ScoreExtra = msg.RI32("Score1");
}
else Name1 = null;
}
public MsgPack WriteMP(string name) =>
Has2P ? new MsgPack(name).Add("Diff", (int)Diff).Add("Score0", Score0)
.Add("Score1", Score1).Add("Name0", Name0).Add("Name1", Name1) :
new MsgPack(name).Add("Diff", (int)Diff)
.Add("Score" , Score0).Add("Name" , Name0);
HasExtra ? new MsgPack(name).Add("Diff", (int)Diff).Add("Name", Name)
.Add("NameExtra", NameExtra).Add("Score", Score).Add("ScoreExtra", ScoreExtra) :
new MsgPack(name).Add("Diff", (int)Diff).Add("Name" , Name) .Add("Score" , Score);
public override string ToString() =>
(Score0 + (Has2P ? (d + Score1) : "") + c + UrlEncode(Name0) +
(Has2P ? ("xxx" + UrlEncode(Name1)) : "") + c +
Diff + c + (Has2P ? "0.1" : "0")).Replace("*", "%2A");
Score + (HasExtra ? (d + ScoreExtra) : "") + c + UrlEncode(Name) +
(HasExtra ? ("xxx" + UrlEncode(NameExtra)) : "") + c +
(int)Diff + c + (HasExtra ? "0.1" : "0");
}
public struct PvList
@@ -249,15 +281,27 @@ namespace KKdMainLib
public Date StartShow;
public Date EndShow;
public void SetValue(string[] data, int i = 0)
public void SetValue(string[] data, int i = 0, bool pda = false)
{
PV_ID = int.Parse(data[i * 7]);
Version = int.Parse(data[i * 7 + 1]);
Edition = int.Parse(data[i * 7 + 2]);
AdvDemoStart.SV(data[i * 7 + 3]);
AdvDemoEnd .SV(data[i * 7 + 4]);
StartShow .SV(data[i * 7 + 5]);
EndShow .SV(data[i * 7 + 6]);
if (pda)
{
PV_ID = int.Parse(data[i * 6]);
Version = int.Parse(data[i * 6 + 1]);
AdvDemoStart.SV(data[i * 6 + 2]);
AdvDemoEnd.SV(data[i * 6 + 3]);
StartShow.SV(data[i * 6 + 4]);
EndShow.SV(data[i * 6 + 5]);
}
else
{
PV_ID = int.Parse(data[i * 7]);
Version = int.Parse(data[i * 7 + 1]);
Edition = int.Parse(data[i * 7 + 2]);
AdvDemoStart.SV(data[i * 7 + 3]);
AdvDemoEnd .SV(data[i * 7 + 4]);
StartShow .SV(data[i * 7 + 5]);
EndShow .SV(data[i * 7 + 6]);
}
}
public void SetValue(MsgPack msg, bool Compact)
@@ -290,9 +334,9 @@ namespace KKdMainLib
public MsgPack WriteMP()
{
MsgPack msgPack = MsgPack.New.Add("ID" , PV_ID )
.Add("Version", Version)
.Add("Edition", Edition);
MsgPack msgPack = MsgPack.New.Add("ID" , PV_ID );
if (Version != 1) msgPack.Add("Version", Version);
if (Edition != 0) msgPack.Add("Edition", Edition);
if (AdvDemoStart.WU) msgPack.Add("AdvDemoStart", AdvDemoStart.Int);
if (AdvDemoEnd .WL) msgPack.Add("AdvDemoEnd" , AdvDemoEnd .Int);
if (StartShow .WL) msgPack.Add("StartShow" , StartShow .Int);
@@ -300,8 +344,9 @@ namespace KKdMainLib
return msgPack;
}
public override string ToString() =>
UrlEncode($"{PV_ID},{Version},{Edition},{AdvDemoStart},{AdvDemoEnd},{StartShow},{EndShow}");
public string ToString(bool pda) => !pda
? UrlEncode($"{PV_ID},{Version},{Edition},{AdvDemoStart},{AdvDemoEnd},{StartShow},{EndShow}")
: UrlEncode($"{PV_ID},{Version},{AdvDemoStart},{AdvDemoEnd},{StartShow},{EndShow}");
}
public struct Date
@@ -375,7 +420,7 @@ namespace KKdMainLib
}
public override string ToString() =>
$"{Year.ToString("d4")}-{Month.ToString("d2")}-{Day.ToString("d2")}";
$"{Year:d4}-{Month:d2}-{Day:d2}";
}
public enum Difficulty
+233 -56
View File
@@ -6,19 +6,24 @@ namespace KKdMainLib
{
public static class HeaderExtensions
{
public static Header ReadHeader(this Stream stream, bool seek, bool readSectionSignature = true)
public static Header ReadHeader(this Stream stream, bool seek)
{
if (seek)
if (stream.PI64 > 4) stream.PI64 -= 4;
else stream.PI64 = 0;
return stream.ReadHeader(readSectionSignature);
return stream.ReadHeader();
}
public static Header ReadHeader(this Stream stream, bool readSectionSignature = true)
public static Header ReadHeader(this Stream stream)
{
Header header = new Header { Format = Format.F2, Signature = stream.RI32(),
DataSize = stream.RI32(), Length = stream.RI32(), Flags = stream.RI32(),
Depth = stream.RI32(), SectionSize = stream.RI32(), Mode = stream.RI32() };
Header header = new Header { Format = Format.F2 };
header.Signature = stream.RU32();
header.DataSize = stream.RU32();
header.Length = stream.RU32();
header.Flags = stream.RU32();
header.Depth = stream.RU32();
header.SectionSize = stream.RU32();
header.Version = stream.RU32();
stream.RI32();
header.UseBigEndian = (header.Flags & 0x08000000) != 0;
header.UseSectionSize = (header.Flags & 0x10000000) != 0;
@@ -26,20 +31,19 @@ namespace KKdMainLib
{
stream.RI64();
stream.RI64();
header.InnerSignature = stream.RI32();
header.InnerSignature = stream.RU32();
stream.RI32();
stream.RI64();
}
stream.Format = header.Format;
if (readSectionSignature) header.SectionSignature = stream.RI32E();
return header;
}
public static void W(this Stream stream, Header header, bool extended = false)
{
header.Length = (header.Format < Format.X && extended) ? 0x40 : 0x20;
header.Flags = (header.UseSectionSize ? 0x10000000 : 0) |
(header.UseBigEndian ? 0x08000000 : 0);
header.Length = (header.Format < Format.X && extended) ? 0x40u : 0x20u;
header.Flags = (header.UseSectionSize ? 0x10000000 : 0u) |
(header.UseBigEndian ? 0x08000000 : 0u);
stream.W(header.Signature);
stream.W(header.DataSize);
@@ -47,7 +51,7 @@ namespace KKdMainLib
stream.W(header.Flags);
stream.W(header.Depth);
stream.W(header.SectionSize);
stream.W(header.Mode);
stream.W(header.Version);
stream.W(0x00);
if (header.Length == 0x40)
{
@@ -59,31 +63,33 @@ namespace KKdMainLib
}
}
public static void WEOFC(this Stream stream, int depth = 0) =>
stream.W(new Header { Depth = depth, Length = 0x20, Signature = 0x43464F45 });
public static void WEOFC(this Stream stream, uint depth = 0) =>
stream.W(new Header { Depth = depth, Length = 0x20, Signature = 0x43464F45, UseSectionSize = true });
}
public static class POFExtensions
{
public static void W(this Stream stream, POF pof, bool shiftX = false, int depth = 0)
public static void W(this Stream stream, POF pof, bool shiftX = false, uint depth = 0)
{
byte[] data = pof.Write(shiftX);
Header header = new Header { Depth = depth, Format = Format.F2,
Length = 0x20, Signature = shiftX ? 0x31464F50 : 0x30464F50 };
header.DataSize = header.SectionSize = data.Length;
Header header = new Header { Depth = depth, Format = Format.F2, Length = 0x20,
Signature = shiftX ? 0x31464F50u : 0x30464F50u, UseSectionSize = true };
header.DataSize = header.SectionSize = (uint)data.Length.A(0x10);
stream.W(header);
stream.W(data);
for (int c = data.Length.A(0x10) - data.Length; c > 0; c--)
stream.W((byte)0);
}
}
public static class ENRSExtensions
{
public static void W(this Stream stream, ENRS enrs, int depth = 0)
public static void W(this Stream stream, ENRS enrs, uint depth = 0)
{
byte[] data = enrs.Write();
Header header = new Header { Depth = depth, Format = Format.F2,
Length = 0x20, Signature = 0x53524E45 };
header.DataSize = header.SectionSize = data.Length;
Length = 0x20, Signature = 0x53524E45, UseSectionSize = true };
header.DataSize = header.SectionSize = (uint)data.Length;
stream.W(header);
stream.W(data);
}
@@ -94,20 +100,21 @@ namespace KKdMainLib
public static Struct RSt(this byte[] data)
{
if (data == null || data.Length < 1) return default;
data = DIVAFILE.Decrypt(data);
Struct @struct;
using (Stream stream = File.OpenReader(data))
@struct = stream.RSt(stream.ReadHeader(false));
return @struct;
}
public static Struct RSt(this Stream stream, Header header)
private static Struct RSt(this Stream stream, Header header)
{
int l = header.UseSectionSize ? header.SectionSize : header.DataSize;
uint l = header.UseSectionSize ? header.SectionSize : header.DataSize;
Struct @struct = new Struct { Header = header, DataOffset =
stream.P, Data = stream.RBy(l) };
int depth = header.Depth;
uint depth = header.Depth;
int lastSig = 0, sig;
uint lastSig = 0, sig;
long length = stream.L - stream.P;
long position = 0;
KKdList<Struct> subStructs = KKdList<Struct>.New;
@@ -125,36 +132,40 @@ namespace KKdMainLib
else @struct.POF .Read(Data, sig == 0x31464F50);
}
else if (header.Depth == 0 && sig == 0x43505854)
subStructs.Add(new Struct { Header = header, DataOffset = stream.P, Data = stream.RBy(l) });
subStructs.Add(stream.RSt(header));
else if (header.Depth > depth) subStructs.Add(stream.RSt(header));
else { stream.PI64 -= header.Length; break; }
lastSig = sig;
}
subStructs.Capacity = subStructs.Count;
if (subStructs.Capacity > 0) @struct.SubStructs = subStructs.ToArray();
return @struct;
}
public static byte[] W(this Struct Struct, bool shiftX = false, bool useDepth = true)
public static byte[] W(this Struct @struct, bool shiftX = false, bool useDepth = true)
{
byte[] Data;
using (Stream stream = File.OpenWriter()) { Struct.Update(shiftX);
stream.W(Struct, shiftX, useDepth); stream.WEOFC(); Data = stream.ToArray(); }
using (Stream stream = File.OpenWriter())
{ stream.W(@struct, 0, shiftX, useDepth); stream.WEOFC(); Data = stream.ToArray(); }
return Data;
}
public static void W(this Stream stream, Struct @struct, bool shiftX = false, bool useDepth = true)
public static void W(this Stream stream, Struct @struct, uint depth = 0,
bool shiftX = false, bool useDepth = true)
{
stream.W(@struct.Header);
stream.W(@struct.Data );
if (@struct.HasPOF ) stream.W(@struct.POF , shiftX, useDepth ? @struct.Depth + 1 : 0);
if (@struct.HasENRS) stream.W(@struct.ENRS, useDepth ? @struct.Depth + 1 : 0);
@struct.Update(shiftX);
@struct.Header.Depth = depth;
stream.W(@struct.Header, @struct.Header.Length == 0x40);
if (@struct.Data != null) stream.W(@struct.Data);
if (@struct.HasPOF ) stream.W(@struct.POF , shiftX, useDepth ? depth + 1 : 0u);
if (@struct.HasENRS) stream.W(@struct.ENRS, useDepth ? depth + 1 : 0u);
if (@struct.HasSubStructs)
{
for (int i = 0; i < @struct.SubStructs.Length; i++)
stream.W(@struct.SubStructs[i], shiftX);
stream.WEOFC(@struct.Depth + 1);
}
stream.W(@struct.SubStructs[i], depth + 1, shiftX, useDepth);
if (@struct.HasPOF || @struct.HasENRS || @struct.HasSubStructs)
stream.WEOFC(depth + 1);
}
}
@@ -184,35 +195,43 @@ namespace KKdMainLib
return MsgPack;
}
public static void Write(this MsgPack mp, bool temp, string file, bool json = false)
{ if (temp) MsgPack.New.Add(mp).Write(file, json).Dispose();
else mp .Write(file, json); }
public static void Write(this MsgPack mp, bool ignoreNull, bool temp, string file, bool json = false)
{ if (temp) MsgPack.New.Add(mp).Write(file, ignoreNull, json).Dispose();
else mp .Write(file, ignoreNull, json); }
public static MsgPack Write(this MsgPack mp, string file, bool json = false)
public static MsgPack Write(this MsgPack mp, string file, bool ignoreNull, bool json = false)
{
if (json) using (JSON _IO = new JSON(File.OpenWriter(file + ".json", true))) _IO.W(mp, "\n", " ");
else using ( MP _IO = new MP(File.OpenWriter(file + ".mp" , true))) _IO.W(mp);
if (json)
using (JSON _IO = new JSON(File.OpenWriter(file + ".json", true)))
_IO.W(mp, ignoreNull, "\n", " ");
else
using ( MP _IO = new MP(File.OpenWriter(file + ".mp" , true)))
_IO.W(mp, ignoreNull);
return mp;
}
public static void WriteAfterAll(this MsgPack mp, bool temp, string file, bool json = false)
{ if (temp) MsgPack.New.Add(mp).WriteAfterAll(file, json).Dispose();
else mp .WriteAfterAll(file, json); }
public static void WriteAfterAll(this MsgPack mp, bool ignoreNull, bool temp, string file, bool json = false)
{ if (temp) MsgPack.New.Add(mp).WriteAfterAll(file, ignoreNull, json).Dispose();
else mp .WriteAfterAll(file, ignoreNull, json); }
public static MsgPack WriteAfterAll(this MsgPack mp, string file, bool json = false)
public static MsgPack WriteAfterAll(this MsgPack mp, string file, bool ignoreNull, bool json = false)
{
byte[] data = null;
if (json) using (JSON _IO = new JSON(File.OpenWriter())) { _IO.W(mp, true); data = _IO.ToArray(); }
else using ( MP _IO = new MP(File.OpenWriter())) { _IO.W(mp ); data = _IO.ToArray(); }
if (json)
using (JSON _IO = new JSON(File.OpenWriter()))
{ _IO.W(mp, ignoreNull, true); data = _IO.ToArray(); }
else
using ( MP _IO = new MP(File.OpenWriter()))
{ _IO.W(mp, ignoreNull ); data = _IO.ToArray(); }
File.WriteAllBytes(file + (json ? ".json" : ".mp"), data);
return mp;
}
public static void ToJSON (this string file) =>
file.ReadMP( ).Write(file, true).Dispose();
file.ReadMP( ).Write(file, false, true).Dispose();
public static void ToMsgPack(this string file) =>
file.ReadMP(true).Write(file ).Dispose();
file.ReadMP(true).Write(file, false ).Dispose();
}
public static class IKFExt
@@ -229,12 +248,170 @@ namespace KKdMainLib
}
}
public static class LibDeflate
public static class HashExt
{
public static void Extract()
public static uint HashFNV1a64(this byte[] array) =>
array.HashMurmurHash(array.Length);
// FNV 1a 64-bit Modified
// 0x1403B04D0 in SBZV_7.10
public static ulong HashFNV1a64m(this byte[] array, int length)
{
if (!File.Exists("libdeflate.dll"))
File.WriteAllBytes("libdeflate.dll", Properties.Resources.libdeflate);
int i = 0;
ulong hash = 0xCBF29CE484222325;
while (i < length)
{ hash = 0x100000001B3 * (hash ^ (ulong)array[i]); i++; }
return (hash >> 32) ^ hash; // Actual Modification
}
public static uint HashMurmurHash(this byte[] array, uint salt = 0,
bool alreadyUpper = false, bool bigEndian = false) =>
array.HashMurmurHash(array.Length, salt, alreadyUpper, bigEndian);
// MurmurHash
// 0x814D7A9C in PCSB00554
// 0x8134C304 in PCSB01007
// 0x0069CEA4 in NPEB02013
public static uint HashMurmurHash(this byte[] array, int length, uint salt = 0,
bool alreadyUpper = false, bool bigEndian = false)
{
uint a, b, hash;
int i;
const uint m = 0x7FD652AD;
const int r = 16;
hash = salt + 0xDEADBEEF;
if (alreadyUpper)
{
if (bigEndian)
for (i = 0; length > 3; length -= 4, i += 4)
{
b = (uint)array[i + 3] | ((uint)array[i + 2] << 8)
| ((uint)array[i + 1] << 16) | ((uint)array[i + 0] << 24);
hash += b;
hash *= m;
hash ^= hash >> r;
}
else
for (i = 0; length > 3; length -= 4, i += 4)
{
b = (uint)array[i + 0] | ((uint)array[i + 1] << 8)
| ((uint)array[i + 2] << 16) | ((uint)array[i + 3] << 24);
hash += b;
hash *= m;
hash ^= hash >> r;
}
if (length > 0)
{
if (length > 1)
{
if (length > 2)
hash += (uint)array[i + 2] << 16;
hash += (uint)array[i + 1] << 8;
}
hash += array[i];
hash *= m;
hash ^= hash >> r;
}
}
else
{
if (bigEndian)
for (i = 0; length > 3; length -= 4, i += 4)
{
b = (uint)array[i + 3] | ((uint)array[i + 2] << 8)
| ((uint)array[i + 1] << 16) | ((uint)array[i + 0] << 24);
a = b & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0xFFFFFF00) | a ;
a = (b >> 8) & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0xFFFF00FF) | (a << 8);
a = (b >> 16) & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0xFF00FFFF) | (a << 16);
a = (b >> 24) & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0x00FFFFFF) | (a << 24);
hash += b;
hash *= m;
hash ^= hash >> r;
}
else
for (i = 0; length > 3; length -= 4, i += 4)
{
b = (uint)array[i + 0] | ((uint)array[i + 1] << 8)
| ((uint)array[i + 2] << 16) | ((uint)array[i + 3] << 24);
a = b & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0xFFFFFF00) | a ;
a = (b >> 8) & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0xFFFF00FF) | (a << 8);
a = (b >> 16) & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0xFF00FFFF) | (a << 16);
a = (b >> 24) & 0xFF; if (a > 0x60 && a < 0x7B) a -= 0x20; b = (b & 0x00FFFFFF) | (a << 24);
hash += b;
hash *= m;
hash ^= hash >> r;
}
if (length > 0)
{
if (length > 1)
{
if (length > 2)
{
b = array[i + 2]; if (b > 0x60 && b < 0x7B) b -= 0x20; hash += b << 16;
}
b = array[i + 1]; if (b > 0x60 && b < 0x7B) b -= 0x20; hash += b << 8;
}
b = array[i]; if (b > 0x60 && b < 0x7B) b -= 0x20; hash += b;
hash *= m;
hash ^= hash >> r;
}
}
hash *= m;
hash ^= hash >> 10;
hash *= m;
hash ^= hash >> 17;
return hash;
}
private static readonly ushort[] CRC16_CCITT_Table = {
0x0000, 0x1021, 0x2042, 0x3063, 0x4084, 0x50A5, 0x60C6, 0x70E7,
0x8108, 0x9129, 0xA14A, 0xB16B, 0xC18C, 0xD1AD, 0xE1CE, 0xF1EF,
0x1231, 0x0210, 0x3273, 0x2252, 0x52B5, 0x4294, 0x72F7, 0x62D6,
0x9339, 0x8318, 0xB37B, 0xA35A, 0xD3BD, 0xC39C, 0xF3FF, 0xE3DE,
0x2462, 0x3443, 0x0420, 0x1401, 0x64E6, 0x74C7, 0x44A4, 0x5485,
0xA56A, 0xB54B, 0x8528, 0x9509, 0xE5EE, 0xF5CF, 0xC5AC, 0xD58D,
0x3653, 0x2672, 0x1611, 0x0630, 0x76D7, 0x66F6, 0x5695, 0x46B4,
0xB75B, 0xA77A, 0x9719, 0x8738, 0xF7DF, 0xE7FE, 0xD79D, 0xC7BC,
0x48C4, 0x58E5, 0x6886, 0x78A7, 0x0840, 0x1861, 0x2802, 0x3823,
0xC9CC, 0xD9ED, 0xE98E, 0xF9AF, 0x8948, 0x9969, 0xA90A, 0xB92B,
0x5AF5, 0x4AD4, 0x7AB7, 0x6A96, 0x1A71, 0x0A50, 0x3A33, 0x2A12,
0xDBFD, 0xCBDC, 0xFBBF, 0xEB9E, 0x9B79, 0x8B58, 0xBB3B, 0xAB1A,
0x6CA6, 0x7C87, 0x4CE4, 0x5CC5, 0x2C22, 0x3C03, 0x0C60, 0x1C41,
0xEDAE, 0xFD8F, 0xCDEC, 0xDDCD, 0xAD2A, 0xBD0B, 0x8D68, 0x9D49,
0x7E97, 0x6EB6, 0x5ED5, 0x4EF4, 0x3E13, 0x2E32, 0x1E51, 0x0E70,
0xFF9F, 0xEFBE, 0xDFDD, 0xCFFC, 0xBF1B, 0xAF3A, 0x9F59, 0x8F78,
0x9188, 0x81A9, 0xB1CA, 0xA1EB, 0xD10C, 0xC12D, 0xF14E, 0xE16F,
0x1080, 0x00A1, 0x30C2, 0x20E3, 0x5004, 0x4025, 0x7046, 0x6067,
0x83B9, 0x9398, 0xA3FB, 0xB3DA, 0xC33D, 0xD31C, 0xE37F, 0xF35E,
0x02B1, 0x1290, 0x22F3, 0x32D2, 0x4235, 0x5214, 0x6277, 0x7256,
0xB5EA, 0xA5CB, 0x95A8, 0x8589, 0xF56E, 0xE54F, 0xD52C, 0xC50D,
0x34E2, 0x24C3, 0x14A0, 0x0481, 0x7466, 0x6447, 0x5424, 0x4405,
0xA7DB, 0xB7FA, 0x8799, 0x97B8, 0xE75F, 0xF77E, 0xC71D, 0xD73C,
0x26D3, 0x36F2, 0x0691, 0x16B0, 0x6657, 0x7676, 0x4615, 0x5634,
0xD94C, 0xC96D, 0xF90E, 0xE92F, 0x99C8, 0x89E9, 0xB98A, 0xA9AB,
0x5844, 0x4865, 0x7806, 0x6827, 0x18C0, 0x08E1, 0x3882, 0x28A3,
0xCB7D, 0xDB5C, 0xEB3F, 0xFB1E, 0x8BF9, 0x9BD8, 0xABBB, 0xBB9A,
0x4A75, 0x5A54, 0x6A37, 0x7A16, 0x0AF1, 0x1AD0, 0x2AB3, 0x3A92,
0xFD2E, 0xED0F, 0xDD6C, 0xCD4D, 0xBDAA, 0xAD8B, 0x9DE8, 0x8DC9,
0x7C26, 0x6C07, 0x5C64, 0x4C45, 0x3CA2, 0x2C83, 0x1CE0, 0x0CC1,
0xEF1F, 0xFF3E, 0xCF5D, 0xDF7C, 0xAF9B, 0xBFBA, 0x8FD9, 0x9FF8,
0x6E17, 0x7E36, 0x4E55, 0x5E74, 0x2E93, 0x3EB2, 0x0ED1, 0x1EF0,
};
// CRC16-CCITT
// 0x140011A90 in SBZV_7.10
public static ushort HashCRC16_CCITT(this byte[] data, int offset = 0, ushort seed = 0xFFFF)
{
int length = data.Length;
ushort hash = seed;
for (int i = offset; i < length; i++)
hash = (ushort)(CRC16_CCITT_Table[(hash >> 8) ^ data[i]] ^ (hash << 8));
return hash;
}
}
}
+322 -37
View File
@@ -7,70 +7,355 @@ namespace KKdMainLib.F2
public struct Bloom : System.IDisposable
{
private int i;
private Stream _IO;
private Header header;
private Stream s;
public bool IsX;
public CountPointer<BLT> BLTs;
public void BLTReader(string file)
{
IsX = false;
BLTs = default;
_IO = File.OpenReader(file + ".blt", true);
header = _IO.ReadHeader();
if (header.Signature != 0x544D4C42 || header.InnerSignature != 0x3) return;
_IO.P -= 0x4;
byte[] bltData = File.ReadAllBytes(file + ".blt");
Struct _BLMT = bltData.RSt(); bltData = null;
if (_BLMT.Header.Signature != 0x544D4C42) return;
BLTs = _IO.RCPE<BLT>();
if (BLTs.C < 1) { _IO.C(); BLTs.C = -1; return; }
s = File.OpenReader(_BLMT.Data);
s.IsBE = _BLMT.Header.UseBigEndian;
if (BLTs.C > 0 && BLTs.O == 0) { _IO.C(); BLTs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = BLTs.Offset;
BLTs = _IO.ReadCountPointerX<BLT>();
}*/
BLTs = s.RCPE<BLT>();
if (BLTs.C < 1) { s.C(); BLTs.C = -1; return; }
_IO.P = BLTs.O;
for (i = 0; i < BLTs.C; i++)
if (!(BLTs.C > 0 && BLTs.O == 0))
{
ref BLT blt = ref BLTs.E[i];
_IO.RI32E();
blt.Color .X = _IO.RF32E();
blt.Color .Y = _IO.RF32E();
blt.Color .Z = _IO.RF32E();
blt.Brightpass.X = _IO.RF32E();
blt.Brightpass.Y = _IO.RF32E();
blt.Brightpass.Z = _IO.RF32E();
blt.Range = _IO.RF32E();
s.PI64 = BLTs.O - _BLMT.Header.Length;
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
blt.Flags = (Flags)s.RI32E();
blt.Color .X = s.RF32E();
blt.Color .Y = s.RF32E();
blt.Color .Z = s.RF32E();
blt.Brightpass.X = s.RF32E();
blt.Brightpass.Y = s.RF32E();
blt.Brightpass.Z = s.RF32E();
blt.Range = s.RF32E();
}
}
_IO.C();
else
{
IsX = true;
BLTs.O = (int)s.RI64E();
s.PI64 = BLTs.O;
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
blt.Flags = (Flags)s.RI32E();
blt.Color .X = s.RF32E();
blt.Color .Y = s.RF32E();
blt.Color .Z = s.RF32E();
blt.Brightpass.X = s.RF32E();
blt.Brightpass.Y = s.RF32E();
blt.Brightpass.Z = s.RF32E();
blt.Range = s.RF32E();
blt.Unk1 = s.RF32 ();
blt.Unk2 = s.RI32 ();
blt.Unk3 = s.RF32 ();
}
}
s.C();
}
public void BLTWriter(string file)
{
if (BLTs.E == null || BLTs.C < 1) return;
if (file.EndsWith("_bloom"))
file = file.Substring(0, file.Length - 6);
s = File.OpenWriter();
s.IsBE = false;
s.Format = Format.F2;
ENRS e = default;
POF p = default;
p.Offsets = KKdList<long>.New;
if (!IsX)
{
s.W(BLTs.C);
s.W(0x50);
s.A(0x10);
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
s.W((int)blt.Flags);
s.W(blt.Color .X);
s.W(blt.Color .Y);
s.W(blt.Color .Z);
s.W(blt.Brightpass.X);
s.W(blt.Brightpass.Y);
s.W(blt.Brightpass.Z);
s.W(blt.Range );
}
e.Array = new ENRS.ENRSEntry[2];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x01, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x20, BLTs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x08, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x44);
}
else
{
s.W(BLTs.C);
s.A(0x08);
s.W(0x10L);
s.A(0x10);
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
s.W((int)blt.Flags);
s.W(blt.Color .X);
s.W(blt.Color .Y);
s.W(blt.Color .Z);
s.W(blt.Brightpass.X);
s.W(blt.Brightpass.Y);
s.W(blt.Brightpass.Z);
s.W(blt.Range );
s.W(blt.Unk1 );
s.W(blt.Unk2 );
s.W(blt.Unk3 );
}
e.Array = new ENRS.ENRSEntry[2];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x02, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x01, ENRS.ENRSEntry.Type.DWORD);
e.Array[0].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x04, 0x01, ENRS.ENRSEntry.Type.QWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x2C, BLTs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x08, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x08);
}
s.A(0x10, true);
byte[] data = s.ToArray(true);
Struct _BLMT = default;
_BLMT.Header.Signature = 0x544D4C42;
_BLMT.Header.DataSize = (uint)data.Length;
_BLMT.Header.Length = 0x40;
_BLMT.Header.Depth = 0;
_BLMT.Header.SectionSize = (uint)data.Length;
_BLMT.Header.Version = 0;
_BLMT.Header.InnerSignature = 0x03;
_BLMT.Header.UseBigEndian = false;
_BLMT.Header.UseSectionSize = true;
_BLMT.Header.Format = Format.F2;
_BLMT.Data = data;
_BLMT.ENRS = e;
_BLMT.POF = p;
File.WriteAllBytes(file + ".blt", _BLMT.W(IsX, true));
}
public void MsgPackReader(string file, bool json)
{
IsX = false;
BLTs = default;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack bloom;
if ((bloom = msgPack["Bloom", true]).NotNull)
{
BLTs.E = new BLT[bloom.Array.Length];
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
blt = default;
MsgPack b = bloom[i];
MsgPack temp;
if ((temp = b["Color"]).NotNull)
{
blt.Flags |= Flags.Color;
blt.Color.X = temp.RF32("X");
blt.Color.Y = temp.RF32("Y");
blt.Color.Z = temp.RF32("Z");
}
if ((temp = b["Brightpass"]).NotNull)
{
blt.Flags |= Flags.Brightpass;
blt.Brightpass.X = temp.RF32("X");
blt.Brightpass.Y = temp.RF32("Y");
blt.Brightpass.Z = temp.RF32("Z");
}
if ((temp = b["Range"]).Object != null)
{
blt.Flags |= Flags.Range;
blt.Range = temp.RF32();
}
}
}
else if ((bloom = msgPack["BloomX", true]).NotNull)
{
IsX = true;
s.IsX = true;
BLTs.E = new BLT[bloom.Array.Length];
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
blt = default;
MsgPack b = bloom[i];
MsgPack temp;
if ((temp = b["Color"]).NotNull)
{
blt.Flags |= Flags.Color;
blt.Color.X = temp.RF32("X");
blt.Color.Y = temp.RF32("Y");
blt.Color.Z = temp.RF32("Z");
}
if ((temp = b["Brightpass"]).NotNull)
{
blt.Flags |= Flags.Brightpass;
blt.Brightpass.X = temp.RF32("X");
blt.Brightpass.Y = temp.RF32("Y");
blt.Brightpass.Z = temp.RF32("Z");
}
if ((temp = b["Range"]).Object != null)
{
blt.Flags |= Flags.Range;
blt.Range = temp.RF32();
}
if ((temp = b["Unk1"]).Object != null)
{
blt.Flags |= Flags.Unk1;
blt.Unk1 = temp.RF32();
}
if ((temp = b["Unk2"]).Object != null)
{
blt.Flags |= Flags.Unk2;
blt.Unk2 = temp.RI32();
}
if ((temp = b["Unk3"]).Object != null)
{
blt.Flags |= Flags.Unk3;
blt.Unk3 = temp.RF32();
}
}
}
bloom.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (BLTs.E == null || BLTs.C < 1) return;
MsgPack bloom;
if (!IsX)
{
bloom = new MsgPack(BLTs.C, "Bloom");
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
MsgPack b = MsgPack.New;
if ((blt.Flags & Flags.Color) != 0)
b.Add(new MsgPack("Color")
.Add("X", blt.Color.X)
.Add("Y", blt.Color.Y)
.Add("Z", blt.Color.Z));
if ((blt.Flags & Flags.Brightpass) != 0)
b.Add(new MsgPack("Brightpass")
.Add("X", blt.Brightpass.X)
.Add("Y", blt.Brightpass.Y)
.Add("Z", blt.Brightpass.Z));
if ((blt.Flags & Flags.Range) != 0)
b.Add("Range", blt.Range);
bloom[i] = b;
}
}
else
{
bloom = new MsgPack(BLTs.C, "BloomX");
for (i = 0; i < BLTs.C; i++)
{
ref BLT blt = ref BLTs.E[i];
MsgPack b = MsgPack.New;
if ((blt.Flags & Flags.Color) != 0)
b.Add(new MsgPack("Color")
.Add("X", blt.Color.X)
.Add("Y", blt.Color.Y)
.Add("Z", blt.Color.Z));
if ((blt.Flags & Flags.Brightpass) != 0)
b.Add(new MsgPack("Brightpass")
.Add("X", blt.Brightpass.X)
.Add("Y", blt.Brightpass.Y)
.Add("Z", blt.Brightpass.Z));
if ((blt.Flags & Flags.Range) != 0)
b.Add("Range", blt.Range);
if ((blt.Flags & Flags.Unk1) != 0)
b.Add("Unk1", blt.Unk1);
if ((blt.Flags & Flags.Unk2) != 0)
b.Add("Unk2", blt.Unk2);
if ((blt.Flags & Flags.Unk3) != 0)
b.Add("Unk3", blt.Unk3);
bloom[i] = b;
}
}
bloom.Write(false, true, file + "_bloom", json);
}
public void TXTWriter(string file)
{
if (BLTs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("ID,ColorR,ColorG,ColorB,BrightpassR,BrightpassG,BrightpassB,Range\n");
s = File.OpenWriter();
s.WPSSJIS("ID,ColorR,ColorG,ColorB,BrightpassR,BrightpassG,BrightpassB,Range\n");
for (i = 0; i < BLTs.C; i++)
_IO.W(i + "," + BLTs[i] + "\n");
File.WriteAllBytes(file + "_bloom.txt", _IO.ToArray(true));
s.W($"{i},{ BLTs[i]}\n");
File.WriteAllBytes($"{file}_bloom.txt", s.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; BLTs = default; header = default; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; BLTs = default; IsX = false; disposed = true; } }
public struct BLT
{
public Vec3 Color;
public Vec3 Brightpass;
public Flags Flags;
public Vec3 Color;
public Vec3 Brightpass;
public float Range;
public float Unk1;
public int Unk2;
public float Unk3;
public override string ToString() => Color .ToString(6) + "," +
Brightpass.ToString(6) + "," +
Range .ToS(6);
public override string ToString() =>
((Flags & Flags.Color) != 0
? $"{Color.X.ToS(6)},{Color.Y.ToS(6)},{Color.Z.ToS(6)}," : ",,,") +
((Flags & Flags.Brightpass) != 0
? $"{Brightpass.X.ToS(6)},{Brightpass.Y.ToS(6)},{Brightpass.Z.ToS(6)}," : ",,,") +
((Flags & Flags.Range) != 0
? $"{Range.ToS(6)}" : "");
}
public enum Flags : int
{
Color = 0b000001,
Brightpass = 0b000010,
Range = 0b000100,
Unk1 = 0b001000,
Unk2 = 0b010000,
Unk3 = 0b100000,
}
}
}
+335 -40
View File
@@ -7,78 +7,373 @@ namespace KKdMainLib.F2
public struct ColorCorrection : System.IDisposable
{
private int i;
private Stream _IO;
private Header header;
private Stream s;
public bool IsX;
public CountPointer<CCT> CCTs;
public void CCTReader(string file)
{
IsX = false;
CCTs = default;
_IO = File.OpenReader(file + ".cct", true);
header = _IO.ReadHeader();
if (header.Signature != 0x54524343 || header.InnerSignature != 0x3) return;
_IO.P -= 0x4;
byte[] ccData = File.ReadAllBytes(file + ".cct");
Struct _CCRT = ccData.RSt(); ccData = null;
if (_CCRT.Header.Signature != 0x54524343) return;
CCTs = _IO.RCPE<CCT>();
if (CCTs.C < 1) { _IO.C(); CCTs.C = -1; return; }
s = File.OpenReader(_CCRT.Data);
s.IsBE = _CCRT.Header.UseBigEndian;
if (CCTs.C > 0 && CCTs.O == 0) { _IO.C(); CCTs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = CCTs.Offset;
CCTs = _IO.ReadCountPointerX<CCT>();
}*/
CCTs = s.RCPE<CCT>();
if (CCTs.C < 1) { s.C(); CCTs.C = -1; return; }
_IO.P = CCTs.O;
for (i = 0; i < CCTs.C; i++)
if (!(CCTs.C > 0 && CCTs.O == 0))
{
ref CCT cct = ref CCTs.E[i];
_IO.RI32E();
cct.Hue = _IO.RF32E();
cct.Saturation = _IO.RF32E();
cct.Lightness = _IO.RF32E();
cct.Exposure = _IO.RF32E();
cct.Gamma.X = _IO.RF32E();
cct.Gamma.Y = _IO.RF32E();
cct.Gamma.Z = _IO.RF32E();
cct.Contrast = _IO.RF32E();
s.PI64 = CCTs.O - _CCRT.Header.Length;
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
cct.Flags = (Flags)s.RI32E();
cct.Hue = s.RF32E();
cct.Saturation = s.RF32E();
cct.Lightness = s.RF32E();
cct.Exposure = s.RF32E();
cct.Gamma.X = s.RF32E();
cct.Gamma.Y = s.RF32E();
cct.Gamma.Z = s.RF32E();
cct.Contrast = s.RF32E();
}
}
else
{
IsX = true;
s.IsX = true;
CCTs.O = (int)s.RI64E();
s.PI64 = CCTs.O;
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
cct.Flags = (Flags)s.RI32E();
cct.Hue = s.RF32E();
cct.Saturation = s.RF32E();
cct.Lightness = s.RF32E();
cct.Exposure = s.RF32E();
cct.Gamma.X = s.RF32E();
cct.Gamma.Y = s.RF32E();
cct.Gamma.Z = s.RF32E();
cct.Contrast = s.RF32E();
}
}
s.C();
}
public void CCTWriter(string file)
{
if (CCTs.E == null || CCTs.C < 1) return;
if (file.EndsWith("_cc"))
file = file.Substring(0, file.Length - 3);
s = File.OpenWriter();
s.IsBE = false;
s.Format = Format.F2;
ENRS e = default;
POF p = default;
p.Offsets = KKdList<long>.New;
if (!IsX)
{
s.W(CCTs.C);
s.W(0x50);
s.A(0x10);
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
s.W((int)cct.Flags);
s.W(cct.Hue );
s.W(cct.Saturation);
s.W(cct.Lightness );
s.W(cct.Exposure );
s.W(cct.Gamma.X );
s.W(cct.Gamma.Y );
s.W(cct.Gamma.Z );
s.W(cct.Contrast );
}
e.Array = new ENRS.ENRSEntry[2];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x01, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x24, CCTs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x08, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x44);
}
else
{
s.W(CCTs.C);
s.A(0x08);
s.W(0x10L);
s.A(0x10);
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
s.W((int)cct.Flags);
s.W(cct.Hue );
s.W(cct.Saturation);
s.W(cct.Lightness );
s.W(cct.Exposure );
s.W(cct.Gamma.X );
s.W(cct.Gamma.Y );
s.W(cct.Gamma.Z );
s.W(cct.Contrast );
}
e.Array = new ENRS.ENRSEntry[2];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x02, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x01, ENRS.ENRSEntry.Type.DWORD);
e.Array[0].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x04, 0x01, ENRS.ENRSEntry.Type.QWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x24, CCTs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x08, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x08);
}
_IO.C();
s.A(0x10, true);
byte[] data = s.ToArray(true);
Struct _CCRT = default;
_CCRT.Header.Signature = 0x54524343;
_CCRT.Header.DataSize = (uint)data.Length;
_CCRT.Header.Length = 0x40;
_CCRT.Header.Depth = 0;
_CCRT.Header.SectionSize = (uint)data.Length;
_CCRT.Header.Version = 0;
_CCRT.Header.InnerSignature = 0x03;
_CCRT.Header.UseBigEndian = false;
_CCRT.Header.UseSectionSize = true;
_CCRT.Header.Format = Format.F2;
_CCRT.Data = data;
_CCRT.ENRS = e;
_CCRT.POF = p;
File.WriteAllBytes(file + ".cct", _CCRT.W(IsX, true));
}
public void MsgPackReader(string file, bool json)
{
IsX = false;
CCTs = default;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack cc;
if ((cc = msgPack["ColorCorrection", true]).NotNull)
{
CCTs.E = new CCT[cc.Array.Length];
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
cct = default;
MsgPack c = cc[i];
MsgPack temp;
if ((temp = c["Hue"]).Object != null)
{
cct.Flags |= Flags.Hue;
cct.Hue = temp.RF32();
}
if ((temp = c["Saturation"]).Object != null)
{
cct.Flags |= Flags.Saturation;
cct.Saturation = temp.RF32();
}
if ((temp = c["Lightness"]).Object != null)
{
cct.Flags |= Flags.Lightness;
cct.Lightness = temp.RF32();
}
if ((temp = c["Exposure"]).Object != null)
{
cct.Flags |= Flags.Exposure;
cct.Exposure = temp.RF32();
}
if ((temp = c["Gamma"]).NotNull)
{
cct.Flags |= Flags.Gamma;
cct.Gamma.X = temp.RF32("X");
cct.Gamma.Y = temp.RF32("Y");
cct.Gamma.Z = temp.RF32("Z");
}
if ((temp = c["Contrast"]).Object != null)
{
cct.Flags |= Flags.Contrast;
cct.Contrast = temp.RF32();
}
}
}
else if ((cc = msgPack["ColorCorrectionX", true]).NotNull)
{
IsX = true;
CCTs.E = new CCT[cc.Array.Length];
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
cct = default;
MsgPack c = cc[i];
MsgPack temp;
if ((temp = c["Hue"]).Object != null)
{
cct.Flags |= Flags.Hue;
cct.Hue = temp.RF32();
}
if ((temp = c["Saturation"]).Object != null)
{
cct.Flags |= Flags.Saturation;
cct.Saturation = temp.RF32();
}
if ((temp = c["Lightness"]).Object != null)
{
cct.Flags |= Flags.Lightness;
cct.Lightness = temp.RF32();
}
if ((temp = c["Exposure"]).Object != null)
{
cct.Flags |= Flags.Exposure;
cct.Exposure = temp.RF32();
}
if ((temp = c["Gamma"]).NotNull)
{
cct.Flags |= Flags.Gamma;
cct.Gamma.X = temp.RF32("X");
cct.Gamma.Y = temp.RF32("Y");
cct.Gamma.Z = temp.RF32("Z");
}
if ((temp = c["Contrast"]).Object != null)
{
cct.Flags |= Flags.Contrast;
cct.Contrast = temp.RF32();
}
}
}
cc.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (CCTs.E == null || CCTs.C < 1) return;
MsgPack cc;
if (!IsX)
{
cc = new MsgPack(CCTs.C, "ColorCorrection");
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
MsgPack c = MsgPack.New;
if ((cct.Flags & Flags.Hue) != 0)
c.Add("Hue", cct.Hue);
if ((cct.Flags & Flags.Saturation) != 0)
c.Add("Saturation", cct.Saturation);
if ((cct.Flags & Flags.Lightness) != 0)
c.Add("Lightness", cct.Lightness);
if ((cct.Flags & Flags.Exposure) != 0)
c.Add("Exposure", cct.Exposure);
if ((cct.Flags & Flags.Gamma) != 0)
c.Add(new MsgPack("Gamma")
.Add("X", cct.Gamma.X)
.Add("Y", cct.Gamma.Y)
.Add("Z", cct.Gamma.Z));
if ((cct.Flags & Flags.Contrast) != 0)
c.Add("Contrast", cct.Contrast);
cc[i] = c;
}
}
else
{
cc = new MsgPack(CCTs.C, "ColorCorrectionX");
for (i = 0; i < CCTs.C; i++)
{
ref CCT cct = ref CCTs.E[i];
MsgPack c = MsgPack.New;
if ((cct.Flags & Flags.Hue) != 0)
c.Add("Hue", cct.Hue);
if ((cct.Flags & Flags.Saturation) != 0)
c.Add("Saturation", cct.Saturation);
if ((cct.Flags & Flags.Lightness) != 0)
c.Add("Lightness", cct.Lightness);
if ((cct.Flags & Flags.Exposure) != 0)
c.Add("Exposure", cct.Exposure);
if ((cct.Flags & Flags.Gamma) != 0)
c.Add(new MsgPack("Gamma")
.Add("X", cct.Gamma.X)
.Add("Y", cct.Gamma.Y)
.Add("Z", cct.Gamma.Z));
if ((cct.Flags & Flags.Contrast) != 0)
c.Add("Contrast", cct.Contrast);
cc[i] = c;
}
}
cc.Write(false, true, file + "_cc", json);
}
public void TXTWriter(string file)
{
if (CCTs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("ID,Hue,Saturation,Lightness,Exposure,GammaR,GammaG,GammaB,Contrast\n");
s = File.OpenWriter();
s.WPSSJIS("ID,Hue,Saturation,Lightness,Exposure,GammaR,GammaG,GammaB,Contrast\n");
for (i = 0; i < CCTs.C; i++)
_IO.W(i + "," + CCTs[i] + "\n");
File.WriteAllBytes(file + "_cc.txt", _IO.ToArray(true));
s.W($"{i},{CCTs[i]}\n");
File.WriteAllBytes($"{file}_cc.txt", s.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; CCTs = default; header = default; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; CCTs = default; IsX = false; disposed = true; } }
public struct CCT
{
public Flags Flags;
public float Hue;
public float Saturation;
public float Lightness;
public float Exposure;
public Vec3 Gamma;
public Vec3 Gamma;
public float Contrast;
public override string ToString() => Hue .ToS(6) + "," +
Saturation.ToS(6) + "," +
Lightness .ToS(6) + "," +
Exposure .ToS(6) + "," +
Gamma .ToString(6) + "," +
Contrast .ToS(6);
public override string ToString() =>
((Flags & Flags.Hue) != 0
? $"{Hue.ToS(6)}," : ",") +
((Flags & Flags.Saturation) != 0
? $"{Saturation.ToS(6)}," : ",") +
((Flags & Flags.Lightness) != 0
? $"{Lightness.ToS(6)}," : ",") +
((Flags & Flags.Exposure) != 0
? $"{Exposure.ToS(6)}," : ",") +
((Flags & Flags.Gamma) != 0
? $"{Gamma.X.ToS(6)},{Gamma.Y.ToS(6)},{Gamma.Z.ToS(6)}," : ",,,") +
((Flags & Flags.Contrast) != 0
? $"{Contrast.ToS(6)}" : "");
}
public enum Flags : int
{
Hue = 0b000001,
Saturation = 0b000010,
Lightness = 0b000100,
Exposure = 0b001000,
Gamma = 0b010000,
Contrast = 0b100000,
}
}
}
+306 -36
View File
@@ -7,74 +7,344 @@ namespace KKdMainLib.F2
public struct DOF : System.IDisposable
{
private int i;
private Stream _IO;
private Header header;
private Stream s;
public bool IsX;
public CountPointer<DFT> DFTs;
public void DFTReader(string file)
{
IsX = false;
DFTs = default;
_IO = File.OpenReader(file + ".dft", true);
header = _IO.ReadHeader();
if (header.Signature != 0x54464F44 || header.InnerSignature != 0x3) return;
_IO.P -= 0x4;
byte[] dftData = File.ReadAllBytes(file + ".dft");
Struct _DOFT = dftData.RSt(); dftData = null;
if (_DOFT.Header.Signature != 0x54464F44) return;
DFTs = _IO.RCPE<DFT>();
if (DFTs.C < 1) { _IO.C(); DFTs.C = -1; return; }
s = File.OpenReader(_DOFT.Data);
s.IsBE = _DOFT.Header.UseBigEndian;
if (DFTs.C > 0 && DFTs.O == 0) { _IO.C(); DFTs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = DFTs.Offset;
DFTs = _IO.ReadCountPointerX<DFT>();
}*/
DFTs = s.RCPE<DFT>();
if (DFTs.C < 1) { s.C(); DFTs.C = -1; return; }
_IO.P = DFTs.O;
for (i = 0; i < DFTs.C; i++)
if (!(DFTs.C > 0 && DFTs.O == 0))
{
ref DFT DFT = ref DFTs.E[i];
_IO.RI32E();
DFT. Focus = _IO.RF32E();
DFT. FocusRange = _IO.RF32E();
DFT.FuzzingRange = _IO.RF32E();
DFT.Ratio = _IO.RF32E();
DFT.Quality = _IO.RF32E();
if (_IO.IsX) _IO.RI32();
s.PI64 = DFTs.O - _DOFT.Header.Length;
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
dft.Flags = (Flags)s.RI32E();
dft.Focus = s.RF32E();
dft.FocusRange = s.RF32E();
dft.FuzzingRange = s.RF32E();
dft.Ratio = s.RF32E();
dft.Quality = s.RF32E();
}
}
else
{
IsX = true;
s.IsX = true;
DFTs.O = (int)s.RI64E();
s.PI64 = DFTs.O;
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
dft.Flags = (Flags)s.RI32E();
dft.Focus = s.RF32E();
dft.FocusRange = s.RF32E();
dft.FuzzingRange = s.RF32E();
dft.Ratio = s.RF32E();
dft.Quality = s.RF32E();
dft.Unk = s.RI32 ();
}
}
s.C();
}
public void DFTWriter(string file)
{
if (DFTs.E == null || DFTs.C < 1) return;
if (file.EndsWith("_dof"))
file = file.Substring(0, file.Length - 4);
s = File.OpenWriter();
s.IsBE = false;
s.Format = Format.F2;
ENRS e = default;
POF p = default;
p.Offsets = KKdList<long>.New;
if (!IsX)
{
s.W(DFTs.C);
s.W(0x50);
s.A(0x10);
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
s.W((int)dft.Flags);
s.W(dft.Focus );
s.W(dft.FocusRange );
s.W(dft.FuzzingRange);
s.W(dft.Ratio );
s.W(dft.Quality );
}
e.Array = new ENRS.ENRSEntry[2];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x01, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x18, DFTs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x06, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x44);
}
else
{
s.W(DFTs.C);
s.A(0x08);
s.W(0x10L);
s.A(0x10);
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
s.W((int)dft.Flags);
s.W(dft.Focus );
s.W(dft.FocusRange );
s.W(dft.FuzzingRange);
s.W(dft.Ratio );
s.W(dft.Quality );
s.W(dft.Unk );
}
e.Array = new ENRS.ENRSEntry[2];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x02, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x01, ENRS.ENRSEntry.Type.DWORD);
e.Array[0].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x04, 0x01, ENRS.ENRSEntry.Type.QWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x1C, DFTs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x06, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x08);
}
_IO.C();
s.A(0x10, true);
byte[] data = s.ToArray(true);
Struct _DOFT = default;
_DOFT.Header.Signature = 0x54464F44;
_DOFT.Header.DataSize = (uint)data.Length;
_DOFT.Header.Length = 0x40;
_DOFT.Header.Depth = 0;
_DOFT.Header.SectionSize = (uint)data.Length;
_DOFT.Header.Version = 0;
_DOFT.Header.InnerSignature = 0x03;
_DOFT.Header.UseBigEndian = false;
_DOFT.Header.UseSectionSize = true;
_DOFT.Header.Format = Format.F2;
_DOFT.Data = data;
_DOFT.ENRS = e;
_DOFT.POF = p;
File.WriteAllBytes(file + ".dft", _DOFT.W(IsX, true));
}
public void MsgPackReader(string file, bool json)
{
IsX = false;
DFTs = default;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack dof;
if ((dof = msgPack["DOF", true]).NotNull)
{
DFTs.E = new DFT[dof.Array.Length];
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
dft = default;
MsgPack d = dof[i];
MsgPack temp;
if ((temp = d["Focus"]).Object != null)
{
dft.Flags |= Flags.Focus;
dft.Focus = temp.RF32();
}
if ((temp = d["FocusRange"]).Object != null)
{
dft.Flags |= Flags.FocusRange;
dft.FocusRange = temp.RF32();
}
if ((temp = d["FuzzingRange"]).Object != null)
{
dft.Flags |= Flags.FuzzingRange;
dft.FuzzingRange = temp.RF32();
}
if ((temp = d["Ratio"]).Object != null)
{
dft.Flags |= Flags.Ratio;
dft.Ratio = temp.RF32();
}
if ((temp = d["Quality"]).Object != null)
{
dft.Flags |= Flags.Quality;
dft.Quality = temp.RF32();
}
}
}
else if ((dof = msgPack["DOFX", true]).NotNull)
{
IsX = true;
DFTs.E = new DFT[dof.Array.Length];
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
dft = default;
MsgPack d = dof[i];
MsgPack temp;
if ((temp = d["Focus"]).Object != null)
{
dft.Flags |= Flags.Focus;
dft.Focus = temp.RF32();
}
if ((temp = d["FocusRange"]).Object != null)
{
dft.Flags |= Flags.FocusRange;
dft.FocusRange = temp.RF32();
}
if ((temp = d["FuzzingRange"]).Object != null)
{
dft.Flags |= Flags.FuzzingRange;
dft.FuzzingRange = temp.RF32();
}
if ((temp = d["Ratio"]).Object != null)
{
dft.Flags |= Flags.Ratio;
dft.Ratio = temp.RF32();
}
if ((temp = d["Quality"]).Object != null)
{
dft.Flags |= Flags.Quality;
dft.Quality = temp.RF32();
}
if ((temp = d["Unk"]).Object != null)
{
dft.Flags |= Flags.Unk;
dft.Unk = temp.RI32();
}
}
}
dof.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (DFTs.E == null || DFTs.C < 1) return;
MsgPack dof;
if (!IsX)
{
dof = new MsgPack(DFTs.C, "DOF");
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
MsgPack d = MsgPack.New;
if ((dft.Flags & Flags.Focus) != 0)
d.Add("Focus", dft.Focus);
if ((dft.Flags & Flags.FocusRange) != 0)
d.Add("FocusRange", dft.FocusRange);
if ((dft.Flags & Flags.FuzzingRange) != 0)
d.Add("FuzzingRange", dft.FuzzingRange);
if ((dft.Flags & Flags.Ratio) != 0)
d.Add("Ratio", dft.Ratio);
if ((dft.Flags & Flags.Quality) != 0)
d.Add("Quality", dft.Quality);
dof[i] = d;
}
}
else
{
dof = new MsgPack(DFTs.C, "DOFX");
for (i = 0; i < DFTs.C; i++)
{
ref DFT dft = ref DFTs.E[i];
MsgPack d = MsgPack.New;
if ((dft.Flags & Flags.Focus) != 0)
d.Add("Focus", dft.Focus);
if ((dft.Flags & Flags.FocusRange) != 0)
d.Add("FocusRange", dft.FocusRange);
if ((dft.Flags & Flags.FuzzingRange) != 0)
d.Add("FuzzingRange", dft.FuzzingRange);
if ((dft.Flags & Flags.Ratio) != 0)
d.Add("Ratio", dft.Ratio);
if ((dft.Flags & Flags.Quality) != 0)
d.Add("Quality", dft.Quality);
if ((dft.Flags & Flags.Unk) != 0)
d.Add("Unk", dft.Unk);
dof[i] = d;
}
}
dof.Write(false, true, file + "_dof", json);
}
public void TXTWriter(string file)
{
if (DFTs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("ID,Focus,FocusRange,FuzzingRange,Ratio,Quality\n");
s = File.OpenWriter();
s.WPSSJIS("ID,Focus,FocusRange,FuzzingRange,Ratio,Quality\n");
for (i = 0; i < DFTs.C; i++)
_IO.W(i + "," + DFTs[i] + "\n");
File.WriteAllBytes(file + "_dof.txt", _IO.ToArray(true));
s.W($"{i},{DFTs[i]}\n");
File.WriteAllBytes($"{file}_dof.txt", s.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; DFTs = default; header = default; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; DFTs = default; IsX = false; disposed = true; } }
public struct DFT
{
public Flags Flags;
public float Focus;
public float FocusRange;
public float FuzzingRange;
public float Ratio;
public float Quality;
public int Unk;
public override string ToString() => Focus .ToS(6) + "," +
FocusRange.ToS(6) + "," +
FuzzingRange.ToS(6) + "," +
Ratio .ToS(6) + "," +
Quality .ToS(6);
public override string ToString() =>
((Flags & Flags.Focus) != 0
? $"{Focus.ToS(6)}," : ",") +
((Flags & Flags.FocusRange) != 0
? $"{FocusRange.ToS(6)}," : ",") +
((Flags & Flags.FuzzingRange) != 0
? $"{FuzzingRange.ToS(6)}," : ",") +
((Flags & Flags.Ratio) != 0
? $"{Ratio.ToS(6)}," : ",") +
((Flags & Flags.Quality) != 0
? $"{Quality.ToS(6)}" : "");
}
public enum Flags : int
{
Focus = 0b000001,
FocusRange = 0b000010,
FuzzingRange = 0b000100,
Ratio = 0b001000,
Quality = 0b010000,
Unk = 0b100000,
}
}
}
+853 -90
View File
@@ -7,69 +7,784 @@ namespace KKdMainLib.F2
public struct Light : System.IDisposable
{
private int i, i0;
private Stream _IO;
private Header header;
private Stream s;
public CountPointer<CountPointer<LIT>> LITs;
public bool IsX;
public CountPointer<LightStruct> LITs;
public void LITReader(string file)
{
IsX = false;
LITs = default;
_IO = File.OpenReader(file + ".lit", true);
header = _IO.ReadHeader();
if (header.Signature != 0x4354494C || header.InnerSignature != 0x2 ||
header.SectionSignature != 0x2) return;
byte[] litData = File.ReadAllBytes(file + ".lit");
Struct _LITC = litData.RSt(); litData = null;
if (_LITC.Header.Signature != 0x4354494C) return;
LITs = _IO.RCPE<CountPointer<LIT>>();
if (LITs.C < 1) { _IO.C(); LITs.C = -1; return; }
s = File.OpenReader(_LITC.Data);
s.IsBE = _LITC.Header.UseBigEndian;
_IO.P = LITs.O;
for (i = 0; i < LITs.C; i++)
s.RI32();
LITs = s.RCPE<LightStruct>();
if (LITs.C < 1) { s.C(); LITs.C = -1; return; }
s.PI64 = LITs.O - _LITC.Header.Length;
if (s.RI32() != 0)
{
LITs[i] = _IO.RCPX<LIT>();
if ((LITs[i].C > 0 || LITs[i].O == 0) && !_IO.IsX) { _IO.C(); LITs.C = -1; return; }
/*{
_IO.Format = Header.Format = Format.X;
_IO.Offset = Header.Length;
_IO.Position = LITs.Offset;
LITs[i] = _IO.ReadCountPointerX<LIT>();
}
if (_IO.IsX) IO.ReadInt64();*/
}
s.PI64 = LITs.O - _LITC.Header.Length;
for (i = 0; i < LITs.C; i++)
LITs.E[i] = new LightStruct
{ C0 = s.RI32E(), O0 = s.RI32E() };
for (i = 0; i < LITs.C; i++)
{
_IO.P = LITs[i].O;
for (i0 = 0; i0 < LITs[i].C; i0++)
for (i = 0; i < LITs.C; i++)
{
ref LIT lit = ref LITs.E[i].E[i0];
lit.Id = (Id )_IO.RI32E();
lit.Flags = (Flags)_IO.RI32E();
lit.Type = (Type )_IO.RI32E();
if (_IO.IsX) { _IO.RI64(); _IO.RI64(); _IO.RI64(); }
lit.Ambient .X = _IO.RF32E();
lit.Ambient .Y = _IO.RF32E();
lit.Ambient .Z = _IO.RF32E();
lit.Ambient .W = _IO.RF32E();
lit.Diffuse .X = _IO.RF32E();
lit.Diffuse .Y = _IO.RF32E();
lit.Diffuse .Z = _IO.RF32E();
lit.Diffuse .W = _IO.RF32E();
lit.Specular .X = _IO.RF32E();
lit.Specular .Y = _IO.RF32E();
lit.Specular .Z = _IO.RF32E();
lit.Specular .W = _IO.RF32E();
lit.Position .X = _IO.RF32E();
lit.Position .Y = _IO.RF32E();
lit.Position .Z = _IO.RF32E();
lit.ToneCurve.X = _IO.RF32E();
lit.ToneCurve.Y = _IO.RF32E();
lit.ToneCurve.Z = _IO.RF32E();
if (_IO.IsX) { _IO.RI64(); _IO.RI64(); _IO.RI64();
_IO.RI64(); _IO.RI64(); _IO.RI32(); }
s.PI64 = LITs.E[i].O0 - _LITC.Header.Length;
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
lit.Id = s.RI32E();
lit.Flags = (Flags)s.RI32E();
lit.Type = (Type )s.RI32E();
lit.Ambient .X = s.RF32E();
lit.Ambient .Y = s.RF32E();
lit.Ambient .Z = s.RF32E();
lit.Ambient .W = s.RF32E();
lit.Diffuse .X = s.RF32E();
lit.Diffuse .Y = s.RF32E();
lit.Diffuse .Z = s.RF32E();
lit.Diffuse .W = s.RF32E();
lit.Specular .X = s.RF32E();
lit.Specular .Y = s.RF32E();
lit.Specular .Z = s.RF32E();
lit.Specular .W = s.RF32E();
lit.Position .X = s.RF32E();
lit.Position .Y = s.RF32E();
lit.Position .Z = s.RF32E();
lit.ToneCurve.X = s.RF32E();
lit.ToneCurve.Y = s.RF32E();
lit.ToneCurve.Z = s.RF32E();
}
}
}
_IO.C();
else
{
IsX = true;
s.PI64 = LITs.O;
for (i = 0; i < LITs.C; i++)
LITs.E[i] = new LightStruct
{ C0 = s.RI32E(), C1 = s.RI32E(), O0 = (int)s.RI64E(), O1 = (int)s.RI64E() };
for (i = 0; i < LITs.C; i++)
{
s.P = LITs.E[i].O0;
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
lit.Id = s.RI32E();
lit.Flags = (Flags)s.RI32E();
lit.Type = (Type )s.RI32E();
s.RI32();
long off = s.RI64();
lit.HasStr = s.RI64() != 0;
lit.Unk10 = s.RI32();
lit.Ambient .X = s.RF32E();
lit.Ambient .Y = s.RF32E();
lit.Ambient .Z = s.RF32E();
lit.Ambient .W = s.RF32E();
lit.Diffuse .X = s.RF32E();
lit.Diffuse .Y = s.RF32E();
lit.Diffuse .Z = s.RF32E();
lit.Diffuse .W = s.RF32E();
lit.Specular .X = s.RF32E();
lit.Specular .Y = s.RF32E();
lit.Specular .Z = s.RF32E();
lit.Specular .W = s.RF32E();
lit.Position .X = s.RF32E();
lit.Position .Y = s.RF32E();
lit.Position .Z = s.RF32E();
lit.Unk01 = s.RF32();
lit.Unk02 = s.RF32();
lit.Unk03 = s.RF32();
lit.Unk04 = s.RF32();
lit.Unk05.X = s.RF32();
lit.Unk05.Y = s.RF32();
lit.Unk05.Z = s.RF32();
lit.ToneCurve.X = s.RF32E();
lit.ToneCurve.Y = s.RF32E();
lit.ToneCurve.Z = s.RF32E();
lit.Unk = s.RF32();
lit.Unk06 = s.RF32();
lit.Unk07 = s.RF32();
lit.Unk08 = s.RF32();
lit.Str = off > 0 ? s.RaO(off).ToSJIS() : "";
}
s.P = LITs.E[i].O1;
for (i0 = 0; i0 < LITs.E[i].C1; i0++)
{
ref LITX lit = ref LITs.E[i].E1[i0];
lit.C = s.RI32E();
s.RI32E();
lit.O = (int)s.RI64E();
}
for (i0 = 0; i0 < LITs.E[i].C1; i0++)
{
ref LITX lit = ref LITs.E[i].E1[i0];
ref KeyValuePair<int, int>[] data = ref lit.E;
data = new KeyValuePair<int, int>[lit.C];
s.P = lit.O;
for (int i1 = 0; i1 < lit.C; i1++)
data[i1] = new KeyValuePair<int, int>(s.RI32E(), s.RI32E());
}
}
}
s.C();
}
public void LITWriter(string file)
{
if (LITs.E == null || LITs.C < 1) return;
if (file.EndsWith("_light"))
file = file.Substring(0, file.Length - 6);
s = File.OpenWriter();
s.IsBE = false;
s.Format = Format.F2;
ENRS e = default;
POF p = default;
p.Offsets = KKdList<long>.New;
if (!IsX)
{
s.W(0x02);
s.W(LITs.C);
s.W(0x50);
s.A(0x10);
int offset0 = 0x50 + (LITs.C * 0x08).A(0x10);
for (i = 0; i < LITs.C; i++)
{
s.W(LITs.E[i].C0 > 0 ? LITs.E[i].C0 : 0);
s.W(LITs.E[i].C0 > 0 ? offset0 : 0);
offset0 += (0x54 * (LITs.E[i].C0 > 0 ? LITs.E[i].C0 : 0)).A(0x10);
}
s.A(0x10);
for (i = 0; i < LITs.C; i++)
{
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
s.W( lit.Id );
s.W((int)lit.Flags);
s.W((int)lit.Type );
s.W(lit.Ambient .X);
s.W(lit.Ambient .Y);
s.W(lit.Ambient .Z);
s.W(lit.Ambient .W);
s.W(lit.Diffuse .X);
s.W(lit.Diffuse .Y);
s.W(lit.Diffuse .Z);
s.W(lit.Diffuse .W);
s.W(lit.Specular .X);
s.W(lit.Specular .Y);
s.W(lit.Specular .Z);
s.W(lit.Specular .W);
s.W(lit.Position .X);
s.W(lit.Position .Y);
s.W(lit.Position .Z);
s.W(lit.ToneCurve.X);
s.W(lit.ToneCurve.Y);
s.W(lit.ToneCurve.Z);
}
s.A(0x10);
}
int count = 0;
for (i = 0; i < LITs.C; i++)
if (LITs.E[i].C0 > 0)
count += LITs.E[i].C0;
e.Array = new ENRS.ENRSEntry[3];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x01, 0x10, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x03, ENRS.ENRSEntry.Type.DWORD);
e.Array[1] = new ENRS.ENRSEntry(0x10, 0x01, 0x08, LITs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
e.Array[2] = new ENRS.ENRSEntry((LITs.C * 0x08).A(0x10), 0x01, 0x54, count);
e.Array[2].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x15, ENRS.ENRSEntry.Type.DWORD);
p.Offsets.Add(0x48);
for (i = 0; i < LITs.C; i++)
p.Offsets.Add(0x54 + 0x08 * i);
}
else
{
long offset0 = 0x50 + (LITs.C * 0x18).A(0x10);
long offset1 = offset0;
long offset2 = offset0 + 0x10;
for (i = 0; i < LITs.C; i++)
offset1 += LITs.E[i].C0 * 0x98;
offset1 = offset1.A(0x10);
long offset3 = offset1;
long offset4 = offset1 + 0x08;
for (i = 0; i < LITs.C; i++)
offset3 += LITs.E[i].C1 * 0x10;
offset3 = offset3.A(0x10);
long offset5 = offset3;
long offset6 = offset3;
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C1; i0++)
offset6 += LITs.E[i].E1[i0].C * 0x08;
byte[][][] strdata = new byte[LITs.C][][];
for (i = 0; i < LITs.C; i++)
{
strdata[i] = new byte[LITs.E[i].C0][];
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
strdata[i][i0] = lit.HasStr && lit.Str != null && lit.Str != "" ? lit.Str.ToSJIS() : null;
}
}
s.W(0x02);
s.W(LITs.C);
s.W(0x50L);
s.A(0x10);
s.P = 0x50;
for (i = 0; i < LITs.C; i++)
{
s.W(LITs.E[i].C0 > 0 ? LITs.E[i].C0 : 0);
s.W(LITs.E[i].C1 > 0 ? LITs.E[i].C1 : 0);
s.W(LITs.E[i].C0 > 0 ? offset0 : 0);
s.W(LITs.E[i].C1 > 0 ? offset1 : 0);
offset0 += 0x98 * (LITs.E[i].C0 > 0 ? LITs.E[i].C0 : 0);
offset1 += 0x10 * (LITs.E[i].C1 > 0 ? LITs.E[i].C1 : 0);
}
s.A(0x10);
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
s.W( lit.Id );
s.W((int)lit.Flags);
s.W((int)lit.Type );
s.W((int)0);
if (lit.HasStr && strdata[i][i0] != null && strdata[i][i0].Length > 0)
{ s.W(offset6); s.W((long)strdata[i][i0].HashMurmurHash(strdata[i][i0].Length));
offset6 += strdata[i][i0].Length + 1; }
else
{ s.W(0x00L); s.W((long)(lit.HasStr ? 0x0CAD3078 : 0)); }
s.W(lit.Unk10 );
s.W(lit.Ambient .X);
s.W(lit.Ambient .Y);
s.W(lit.Ambient .Z);
s.W(lit.Ambient .W);
s.W(lit.Diffuse .X);
s.W(lit.Diffuse .Y);
s.W(lit.Diffuse .Z);
s.W(lit.Diffuse .W);
s.W(lit.Specular .X);
s.W(lit.Specular .Y);
s.W(lit.Specular .Z);
s.W(lit.Specular .W);
s.W(lit.Position .X);
s.W(lit.Position .Y);
s.W(lit.Position .Z);
s.W(lit.Unk01 );
s.W(lit.Unk02 );
s.W(lit.Unk03 );
s.W(lit.Unk04 );
s.W(lit.Unk05.X );
s.W(lit.Unk05.Y );
s.W(lit.Unk05.Z );
s.W(lit.ToneCurve.X);
s.W(lit.ToneCurve.Y);
s.W(lit.ToneCurve.Z);
s.W(lit.Unk );
s.W(lit.Unk06 );
s.W(lit.Unk07 );
s.W(lit.Unk08 );
}
s.A(0x10);
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C1; i0++)
{
ref LITX lit = ref LITs.E[i].E1[i0];
s.W(lit.C);
s.W((int)0);
s.W(offset5);
offset5 += lit.C * 0x08;
}
s.A(0x10);
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C1; i0++)
{
ref LITX lit = ref LITs.E[i].E1[i0];
for (int i1 = 0; i1 < lit.C; i1++)
{
s.W(lit.E[i1].Key);
s.W(lit.E[i1].Value);
}
}
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
if (lit.HasStr && strdata[i][i0] != null && strdata[i][i0].Length > 0)
{
s.W(strdata[i][i0]);
s.W((byte)0);
}
}
s.A(0x10);
bool sub = false;
for (i = 0; i < LITs.C; i++)
if (LITs.E[i].C1 > 0) { sub = true; break; }
int count = 0;
for (i = 0; i < LITs.C; i++)
if (LITs.E[i].C0 > 0)
count += LITs.E[i].C0;
e.Array = new ENRS.ENRSEntry[sub ? 5 : 3];
e.Array[0] = new ENRS.ENRSEntry(0x00, 0x02, 0x50, 0x01);
e.Array[0].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
e.Array[0].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x01, ENRS.ENRSEntry.Type.QWORD);
e.Array[1] = new ENRS.ENRSEntry(0x50, 0x02, 0x18, LITs.C);
e.Array[1].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
e.Array[1].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.QWORD);
e.Array[2] = new ENRS.ENRSEntry((LITs.C * 0x18).A(0x10), 0x03, 0x98, count);
e.Array[2].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x03, ENRS.ENRSEntry.Type.DWORD);
e.Array[2].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x18, 0x0F, ENRS.ENRSEntry.Type.DWORD);
e.Array[2].Sub[2] = new ENRS.ENRSEntry.SubENRSEntry(0x20, 0x03, ENRS.ENRSEntry.Type.DWORD);
if (sub)
{
int sub_count = 0;
for (i = 0; i < LITs.C; i++)
if (LITs.E[i].C1 > 0)
sub_count += LITs.E[i].C1;
e.Array[3] = new ENRS.ENRSEntry((count * 0x98).A(0x10), 0x02, 0x10, sub_count);
e.Array[3].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x01, ENRS.ENRSEntry.Type.DWORD);
e.Array[3].Sub[1] = new ENRS.ENRSEntry.SubENRSEntry(0x04, 0x01, ENRS.ENRSEntry.Type.QWORD);
e.Array[4] = new ENRS.ENRSEntry(sub_count * 0x10, 0x01, 0x08, LITs.E[0].E1[0].C);
e.Array[4].Sub[0] = new ENRS.ENRSEntry.SubENRSEntry(0x00, 0x02, ENRS.ENRSEntry.Type.DWORD);
}
p.Offsets.Add(0x08);
for (i = 0; i < LITs.C; i++)
{
if (LITs.E[i].C0 > 0)
p.Offsets.Add(0x58 + 0x18 * i);
if (LITs.E[i].C1 > 0)
p.Offsets.Add(0x60 + 0x18 * i);
}
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
{
ref LIT lit = ref LITs.E[i].E0[i0];
if (lit.HasStr && strdata[i][i0] != null && strdata[i][i0].Length > 0)
p.Offsets.Add(offset2);
offset2 += 0x98;
}
if (sub)
for (i = 0; i < LITs.C; i++)
for (i0 = 0; i0 < LITs.E[i].C1; i0++)
{
p.Offsets.Add(offset4);
offset4 += 0x10;
}
}
s.A(0x10, true);
byte[] data = s.ToArray(true);
Struct _LITC = default;
_LITC.Header.Signature = 0x4354494C;
_LITC.Header.DataSize = (uint)data.Length;
_LITC.Header.Length = 0x40;
_LITC.Header.Depth = 0;
_LITC.Header.SectionSize = (uint)data.Length;
_LITC.Header.Version = 0;
_LITC.Header.InnerSignature = 0x02;
_LITC.Header.UseBigEndian = false;
_LITC.Header.UseSectionSize = true;
_LITC.Header.Format = Format.F2;
_LITC.Data = data;
_LITC.ENRS = e;
_LITC.POF = p;
File.WriteAllBytes(file + ".lit", _LITC.W(IsX, true));
}
public void MsgPackReader(string file, bool json)
{
IsX = false;
LITs = default;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack light;
if ((light = msgPack["Light", true]).NotNull)
{
LITs.E = new LightStruct[light.Array.Length];
for (i = 0; i < LITs.C; i++)
{
ref LightStruct lit = ref LITs.E[i];
lit = default;
MsgPack l = light[i];
MsgPack l0;
if ((l0 = l["MainData", true]).IsNull)
continue;
lit.C0 = l0.Array.Length;
for (i0 = 0; i0 < lit.C0; i0++)
{
ref LIT lit0 = ref lit.E0[i0];
MsgPack l1 = l0[i0];
MsgPack temp;
if ((temp = l1["Id"]).Object != null)
lit0.Id = temp.RI32();
if ((temp = l1["Type"]).Object != null)
{
lit0.Flags |= Flags.Type;
lit0.Type = (Type)temp.RI32();
}
if ((temp = l1["Str"]).Object != null)
{
lit0.HasStr = true;
lit0.Str = temp.RS();
}
if ((temp = l1["Ambient"]).Object != null)
{
lit0.Flags |= Flags.Ambient;
lit0.Ambient.X = temp.RF32("R");
lit0.Ambient.Y = temp.RF32("G");
lit0.Ambient.Z = temp.RF32("B");
lit0.Ambient.W = temp.RF32("A");
}
if ((temp = l1["Diffuse"]).Object != null)
{
lit0.Flags |= Flags.Diffuse;
lit0.Diffuse.X = temp.RF32("R");
lit0.Diffuse.Y = temp.RF32("G");
lit0.Diffuse.Z = temp.RF32("B");
lit0.Diffuse.W = temp.RF32("A");
}
if ((temp = l1["Specular"]).Object != null)
{
lit0.Flags |= Flags.Specular;
lit0.Specular.X = temp.RF32("R");
lit0.Specular.Y = temp.RF32("G");
lit0.Specular.Z = temp.RF32("B");
lit0.Specular.W = temp.RF32("A");
}
if ((temp = l1["Position"]).Object != null)
{
lit0.Flags |= Flags.Position;
lit0.Position.X = temp.RF32("X");
lit0.Position.Y = temp.RF32("Y");
lit0.Position.Z = temp.RF32("Z");
}
if ((temp = l1["ToneCurve"]).Object != null)
{
lit0.Flags |= Flags.ToneCurve;
lit0.ToneCurve.X = temp.RF32("Begin" );
lit0.ToneCurve.Y = temp.RF32("End" );
lit0.ToneCurve.Z = temp.RF32("BlendRate");
}
}
}
}
else if ((light = msgPack["LightX", true]).NotNull)
{
IsX = true;
LITs.E = new LightStruct[light.Array.Length];
for (i = 0; i < LITs.C; i++)
{
ref LightStruct lit = ref LITs.E[i];
lit = default;
MsgPack l = light[i];
MsgPack l0;
if ((l0 = l["MainData", true]).IsNull)
continue;
lit.C0 = l0.Array.Length;
for (i0 = 0; i0 < lit.C0; i0++)
{
ref LIT lit0 = ref lit.E0[i0];
lit0 = default;
MsgPack l1;
if ((l1 = l0[i0]).IsNull)
continue;
MsgPack temp;
if ((temp = l1["Id"]).Object != null)
lit0.Id = temp.RI32();
if ((temp = l1["Flags"]).Object != null)
lit0.Flags = (Flags)temp.RI32();
if ((temp = l1["Type"]).Object != null)
lit0.Type = (Type)temp.RI32();
if ((temp = l1["Ambient"]).Object != null)
{
lit0.Ambient.X = temp.RF32("R");
lit0.Ambient.Y = temp.RF32("G");
lit0.Ambient.Z = temp.RF32("B");
lit0.Ambient.W = temp.RF32("A");
}
if ((temp = l1["Diffuse"]).Object != null)
{
lit0.Diffuse.X = temp.RF32("R");
lit0.Diffuse.Y = temp.RF32("G");
lit0.Diffuse.Z = temp.RF32("B");
lit0.Diffuse.W = temp.RF32("A");
}
if ((temp = l1["Specular"]).Object != null)
{
lit0.Specular.X = temp.RF32("R");
lit0.Specular.Y = temp.RF32("G");
lit0.Specular.Z = temp.RF32("B");
lit0.Specular.W = temp.RF32("A");
}
if ((temp = l1["Position"]).Object != null)
{
lit0.Position.X = temp.RF32("X");
lit0.Position.Y = temp.RF32("Y");
lit0.Position.Z = temp.RF32("Z");
}
if ((temp = l1["ToneCurve"]).Object != null)
lit0.ToneCurve.X = temp.RF32("Begin" );
lit0.ToneCurve.Y = temp.RF32("End" );
lit0.ToneCurve.Z = temp.RF32("BlendRate");
if ((temp = l1["Str"]).Object != null)
{
lit0.HasStr = true;
lit0.Str = temp.RS();
}
if ((temp = l1["Unk01"]).Object != null)
lit0.Unk01 = temp.RF32();
if ((temp = l1["Unk02"]).Object != null)
lit0.Unk02 = temp.RF32();
if ((temp = l1["Unk03"]).Object != null)
lit0.Unk03 = temp.RF32();
if ((temp = l1["Unk04"]).Object != null)
lit0.Unk04 = temp.RF32();
if ((temp = l1["Unk05"]).Object != null)
lit0.Unk05.X = temp.RF32("X");
lit0.Unk05.Y = temp.RF32("Y");
lit0.Unk05.Z = temp.RF32("Z");
if ((temp = l1["Unk06"]).Object != null)
lit0.Unk06 = temp.RF32();
if ((temp = l1["Unk07"]).Object != null)
lit0.Unk07 = temp.RF32();
if ((temp = l1["Unk08"]).Object != null)
lit0.Unk08 = temp.RF32();
if ((temp = l1["Unk10"]).Object != null)
lit0.Unk10 = temp.RI32();
if ((temp = l1["Unk"]).Object != null)
lit0.Unk = temp.RF32();
}
if ((l0 = l["SubData", true]).IsNull)
continue;
lit.C1 = l0.Array.Length;
for (i0 = 0; i0 < lit.C1; i0++)
{
ref LITX lit1 = ref lit.E1[i0];
lit1 = default;
MsgPack l1;
if ((l1 = l0[i0]).IsNull && l1.Array != null)
continue;
lit1.C = l1.Array.Length;
lit1.E = new KeyValuePair<int, int>[lit1.C];
for (int i1 = 0; i1 < lit1.C; i1++)
{
lit1.E[i1] = default;
MsgPack l2 = l1[i1];
MsgPack temp;
if ((temp = l2["Key"]).Object != null)
lit1.E[i1].Key = temp.RI32();
if ((temp = l2["Value"]).Object != null)
lit1.E[i1].Value = temp.RI32();
}
}
}
}
light.Dispose();
msgPack.Dispose();
}
public void MsgPackWriter(string file, bool json)
{
if (LITs.E == null || LITs.C < 1) return;
MsgPack light;
if (!IsX)
{
light = new MsgPack(LITs.C, "Light");
for (i = 0; i < LITs.C; i++)
{
ref LightStruct lit = ref LITs.E[i];
MsgPack l = MsgPack.New;
MsgPack l0 = new MsgPack(lit.C0, "MainData");
for (i0 = 0; i0 < lit.C0; i0++)
{
ref LIT lit0 = ref lit.E0[i0];
MsgPack l1 = MsgPack.New;
l1.Add("Id", lit0.Id);
if ((lit0.Flags & Flags.Type) != 0)
l1.Add("Type", (int)lit0.Type);
if ((lit0.Flags & Flags.Ambient) != 0)
l1.Add(new MsgPack("Ambient")
.Add("R", lit0.Ambient.X)
.Add("G", lit0.Ambient.Y)
.Add("B", lit0.Ambient.Z)
.Add("A", lit0.Ambient.W));
if ((lit0.Flags & Flags.Diffuse) != 0)
l1.Add(new MsgPack("Diffuse")
.Add("R", lit0.Diffuse.X)
.Add("G", lit0.Diffuse.Y)
.Add("B", lit0.Diffuse.Z)
.Add("A", lit0.Diffuse.W));
if ((lit0.Flags & Flags.Specular) != 0)
l1.Add(new MsgPack("Specular")
.Add("R", lit0.Specular.X)
.Add("G", lit0.Specular.Y)
.Add("B", lit0.Specular.Z)
.Add("A", lit0.Specular.W));
if ((lit0.Flags & Flags.Position) != 0)
l1.Add(new MsgPack("Position")
.Add("X", lit0.Position.X)
.Add("Y", lit0.Position.Y)
.Add("Z", lit0.Position.Z));
if ((lit0.Flags & Flags.ToneCurve) != 0)
l1.Add(new MsgPack("ToneCurve")
.Add("Begin" , lit0.ToneCurve.X)
.Add("End" , lit0.ToneCurve.Y)
.Add("BlendRate", lit0.ToneCurve.Z));
l0[i0] = l1;
}
l.Add(l0);
light[i] = l;
}
}
else
{
light = new MsgPack(LITs.C, "LightX");
for (i = 0; i < LITs.C; i++)
{
ref LightStruct lit = ref LITs.E[i];
MsgPack l = MsgPack.New;
MsgPack l0 = new MsgPack(lit.C0, "MainData");
for (i0 = 0; i0 < lit.C0; i0++)
{
ref LIT lit0 = ref lit.E0[i0];
MsgPack l1 = MsgPack.New;
l1.Add("Id", lit0.Id);
l1.Add("Flags", (int)lit0.Flags);
l1.Add("Type", (int)lit0.Type);
l1.Add(new MsgPack("Ambient")
.Add("R", lit0.Ambient.X)
.Add("G", lit0.Ambient.Y)
.Add("B", lit0.Ambient.Z)
.Add("A", lit0.Ambient.W));
l1.Add(new MsgPack("Diffuse")
.Add("R", lit0.Diffuse.X)
.Add("G", lit0.Diffuse.Y)
.Add("B", lit0.Diffuse.Z)
.Add("A", lit0.Diffuse.W));
l1.Add(new MsgPack("Specular")
.Add("R", lit0.Specular.X)
.Add("G", lit0.Specular.Y)
.Add("B", lit0.Specular.Z)
.Add("A", lit0.Specular.W));
l1.Add(new MsgPack("Position")
.Add("X", lit0.Position.X)
.Add("Y", lit0.Position.Y)
.Add("Z", lit0.Position.Z));
l1.Add(new MsgPack("ToneCurve")
.Add("Begin" , lit0.ToneCurve.X)
.Add("End" , lit0.ToneCurve.Y)
.Add("BlendRate", lit0.ToneCurve.Z));
if (lit0.HasStr)
l1.Add("Str", lit0.Str ?? "");
l1.Add("Unk01", lit0.Unk01);
l1.Add("Unk02", lit0.Unk02);
l1.Add("Unk03", lit0.Unk03);
l1.Add("Unk04", lit0.Unk04);
l1.Add(new MsgPack("Unk05")
.Add("X", lit0.Unk05.X)
.Add("Y", lit0.Unk05.Y)
.Add("Z", lit0.Unk05.Z));
l1.Add("Unk06", lit0.Unk06);
l1.Add("Unk07", lit0.Unk07);
l1.Add("Unk08", lit0.Unk08);
l1.Add("Unk10", lit0.Unk10);
l1.Add("Unk", lit0.Unk);
l0[i0] = l1;
}
l.Add(l0);
if (lit.C1 > 0)
{
l0 = new MsgPack(lit.C1, "SubData");
for (i0 = 0; i0 < lit.C1; i0++)
{
ref LITX lit1 = ref lit.E1[i0];
MsgPack l1 = new MsgPack(lit1.C);
for (int i1 = 0; i1 < lit1.C; i1++)
l1[i1] = MsgPack.New
.Add("Key" , lit1.E[i1].Key )
.Add("Value", lit1.E[i1].Value);
l0[i0] = l1;
}
l.Add(l0);
}
light[i] = l;
}
}
light.Write(false, true, file + "_light", json);
}
public void TXTWriter(string file)
@@ -77,48 +792,89 @@ namespace KKdMainLib.F2
i = 0;
if (LITs.C < 1) return;
_IO = File.OpenWriter();
_IO.WPSSJIS("Type,AmbientR,AmbientG,AmbientB,DiffuseR,DiffuseG,DiffuseB,SpecularR,SpecularG," +
s = File.OpenWriter();
s.WPSSJIS("Type,AmbientR,AmbientG,AmbientB,DiffuseR,DiffuseG,DiffuseB,SpecularR,SpecularG," +
"SpecularB,SpecularA,PosX,PosY,PosZ,ToneCurveBegin,ToneCurveEnd,ToneCurveBlendRate," +
(file.EndsWith("_chara") ? "コメント" : "ID") + "\n");
for (i0 = 0; i0 < LITs[i].C; i0++)
_IO.W(LITs[i][i0] + "," + i + "\n");
File.WriteAllBytes(file + "_light.txt", _IO.ToArray(true));
}
public struct LIT
{
public Id Id;
public Flags Flags;
public Type Type;
public Vec4 Ambient;
public Vec4 Diffuse;
public Vec4 Specular;
public Vec3 Position;
public Vec3 ToneCurve;
public override string ToString() => Flags == 0 ? ",,,,,,,,,,,,,,,," : Type + "," +
((Flags & Flags.Ambient ) == 0 ? ",,," : Ambient .ToString(6) + ",") +
((Flags & Flags.Diffuse ) == 0 ? ",,," : Diffuse .ToString(6) + ",") +
((Flags & Flags.Specular ) == 0 ? ",,,," : Specular .ToString(6) + ",") +
((Flags & Flags.Position ) == 0 ? ",,," : Position .ToString(6) + ",") +
((Flags & Flags.ToneCurve) == 0 ? ",,," : ToneCurve.ToString(6));
for (i0 = 0; i0 < LITs.E[i].C0; i0++)
s.W($"{LITs.E[i].E0[i0]},{i}\n");
File.WriteAllBytes($"{file}_light.txt", s.ToArray(true));
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; LITs = default; header = default; disposed = true; } }
{ if (!disposed) { if (s != null) s.D(); s = null; LITs = default; IsX = false; disposed = true; } }
public struct LightStruct
{
public int C0 { get => E0 != null ? E0.Length : 0;
set => E0 = value > -1 ? new LIT[value] : null; }
public int O0;
public LIT[] E0;
public int C1 { get => E1 != null ? E1.Length : 0;
set => E1 = value > -1 ? new LITX[value] : default; }
public int O1;
public LITX[] E1;
public LIT this[int index]
{ get => E0 != null && index > -1 && index < E0.LongLength ? E0[index] : default;
set { if (E0 != null && index > -1 && index < E0.LongLength) E0[index] = value; } }
public LITX this[int index, bool x]
{ get => E1 != null && index > -1 && index < E1.LongLength ? E1[index] : default;
set { if (E1 != null && index > -1 && index < E1.LongLength) E1[index] = value; } }
public override string ToString() => C0 < 1 ? "No Entries" :
C0 == 1 ? E0[0].ToString() : "Count: " + C0;
}
public struct LIT
{
public int Id;
public Flags Flags;
public Type Type;
public string Str;
public bool HasStr;
public Vec4 Ambient;
public Vec4 Diffuse;
public Vec4 Specular;
public Vec3 Position;
public float Unk01;
public float Unk02;
public float Unk03;
public float Unk04;
public Vec3 Unk05;
public Vec3 ToneCurve;
public float Unk;
public float Unk06;
public float Unk07;
public float Unk08;
public int Unk10;
public override string ToString() => Flags == 0 ? ",,,,,,,,,,,,,,,," : $"{(Type)Type}," +
((Flags & Flags.Ambient ) != 0
? $"{Ambient .X.ToS(6)},{Ambient .Y.ToS(6)},{Ambient .Z.ToS(6)}," : ",,,") +
((Flags & Flags.Diffuse ) != 0
? $"{Diffuse .X.ToS(6)},{Diffuse .Y.ToS(6)},{Diffuse .Z.ToS(6)}," : ",,,") +
((Flags & Flags.Specular ) != 0
? $"{Specular .X.ToS(6)},{Specular .Y.ToS(6)},{Specular .Z.ToS(6)},{Specular .W.ToS(6)}," : ",,,,") +
((Flags & Flags.Position ) != 0
? $"{Position .X.ToS(6)},{Position .Y.ToS(6)},{Position .Z.ToS(6)}," : ",,,") +
((Flags & Flags.ToneCurve) != 0
? $"{ToneCurve.X.ToS(6)},{ToneCurve.Y.ToS(6)},{ToneCurve.Z.ToS(6)}" : ",,");
}
public enum Id : int
{
CHARA = 0,
STAGE = 1,
SUN = 2,
REFLECT = 3,
SHADOW = 4,
CHARA_COLOR = 5,
CHARA_F = 6,
PROJECTION = 7,
CHARA = 0x00,
STAGE = 0x01,
SUN = 0x02,
REFLECT = 0x03,
SHADOW = 0x04,
CHARA_COLOR = 0x05,
CHARA_F = 0x06,
PROJECTION = 0x07,
}
public enum Type : int
@@ -131,12 +887,19 @@ namespace KKdMainLib.F2
public enum Flags : int
{
Type = 0b0000000001,
Ambient = 0b0000000010,
Diffuse = 0b0000000100,
Specular = 0b0000001000,
Position = 0b0000010000,
ToneCurve = 0b1000000000,
Type = 0b00000000000000001,
Ambient = 0b00000000000000010,
Diffuse = 0b00000000000000100,
Specular = 0b00000000000001000,
Position = 0b00000000000010000,
ToneCurve = 0b00000001000000000,
}
}
public struct LITX
{
public int C;
public int O;
public KeyValuePair<int, int>[] E;
}
}
+342 -167
View File
@@ -1,6 +1,5 @@
//Original: https://github.com/blueskythlikesclouds/MikuMikuLibrary/
using System.IO.Compression;
using System.Security.Cryptography;
using KKdBaseLib;
using KKdMainLib.IO;
@@ -14,30 +13,28 @@ namespace KKdMainLib
public FARC(string file, bool isDirectory = false)
{ if (isDirectory) DirectoryPath = file; else FilePath = file; NewFARC(); }
private void NewFARC() { if (!MSIO.File.Exists("libdeflate.dll"))
File.WriteAllBytes("libdeflate.dll", Properties.Resources.libdeflate);
Files = KKdList<FARCFile>.New; Signature = Farc.FArC; Format = Format.DT; }
private void NewFARC() { Files = KKdList<FARCFile>.New; FT = false; }
public KKdList<FARCFile> Files = KKdList<FARCFile>.New;
public Type FARCType;
public Flags FARCFlags;
public Farc Signature = Farc.FArC;
public Format Format = Format.DT;
public bool FT = false;
public string FilePath, DirectoryPath;
public bool HasFiles => Files.IsNull ? false : Files.Count > 0;
public bool HasFiles => !Files.IsNull || Files.Count > 0;
public int CompressionLevel = 12;
private readonly byte[] key = Text.ToASCII("project_diva.bin");
private readonly byte[] key = "project_diva.bin".ToASCII();
private readonly byte[] keyFT = { 0x13, 0x72, 0xD5, 0x7B, 0x6E, 0x9E,
0x31, 0xEB, 0xA2, 0x39, 0xB8, 0x3C, 0x15, 0x57, 0xC6, 0xBB };
private AesManaged GetAes(bool isFT, byte[] iv) =>
new AesManaged () { KeySize = 128, Key = isFT ? keyFT : key,
BlockSize = 128, Mode = isFT ? CipherMode.CBC : CipherMode.ECB,
Padding = PaddingMode.Zeros, IV = iv ?? new byte[16] };
private AesManaged GetAes(byte[] iv = null) =>
new AesManaged () { KeySize = 128, Key = iv != null ? keyFT : key,
BlockSize = 128, Mode = iv != null ? CipherMode.CBC : CipherMode.ECB,
Padding = iv != null ? PaddingMode.PKCS7 : PaddingMode.Zeros, IV = iv ?? new byte[16] };
public void Unpack(bool saveToDisk = true)
{ if (HeaderReader()) { FileReader(); if (saveToDisk) SaveToDisk(); } }
{ if (HeaderReader()) FileReader(saveToDisk); }
public bool HeaderReader()
{
@@ -45,87 +42,157 @@ namespace KKdMainLib
if (!File.Exists(FilePath)) return false;
Stream reader = File.OpenReader(FilePath);
DirectoryPath = Path.GetFullPath(FilePath).Replace(Path.GetExtension(FilePath), "");
DirectoryPath = Path.RemoveExtension(Path.GetFullPath(FilePath));
Signature = (Farc)reader.RI32E(true);
if (Signature != Farc.FArc && Signature != Farc.FArC && Signature != Farc.FARC)
{ reader.Dispose(); return false; }
FT = false;
int headerLength = reader.RI32E(true);
if (Signature == Farc.FARC)
{
FARCType = (Type)reader.RI32E(true);
FARCFlags = (Flags)reader.RI32E(true);
reader.RI32();
int farcMode = reader.RI32E(true);
int alignment = reader.RI32E(true);
Format = (FARCType & Type.ECB) != 0 && (farcMode & (farcMode - 1)) != 0 ? Format.FT : Format.DT;
FT = (FARCFlags & Flags.AES) != 0 && (alignment & (alignment - 1)) != 0;
if (Format == Format.FT && (FARCType & Type.ECB) != 0)
if (FT)
{
reader.Dispose();
byte[] header = new byte[headerLength - 0x08];
MSIO.FileStream stream = new MSIO.FileStream(FilePath, MSIO.FileMode.Open,
MSIO.FileAccess.ReadWrite, MSIO.FileShare.ReadWrite) { Position = 0x10 };
using (AesManaged aes = GetAes(true, null))
using (CryptoStream cryptoStream = new CryptoStream(stream,
aes.CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(header, 0x00, headerLength - 0x08);
header = SkipData(header, 0x10);
reader = File.OpenReader(header);
farcMode = reader.RI32E(true);
headerLength -= 0x08;
reader.S(-0x04, SeekOrigin.Current);
}
else
headerLength -= 0x0C;
}
if (Signature == Farc.FARC)
if (reader.RI32E(true) == 1)
Files.Capacity = 0;
if (FT)
{
headerLength -= 0x10;
byte[] iv = reader.RBy(0x10);
byte[] header = reader.RBy(headerLength);
reader.Dispose();
using (MSIO.MemoryStream ms = new MSIO.MemoryStream())
{
using (AesManaged aes = GetAes(iv))
using (CryptoStream cryptoStream = new CryptoStream(ms,
aes.CreateDecryptor(), CryptoStreamMode.Write))
cryptoStream.Write(header, 0x00, headerLength);
header = ms.ToArray();
headerLength = header.Length;
}
reader = File.OpenReader(header);
int alignment = reader.RI32E(true);
}
else
{
byte[] header = reader.RBy(headerLength);
reader.Dispose();
reader = File.OpenReader(header);
}
bool hasPerFileFlags = false;
if (Signature == Farc.FARC) {
if (reader.RI32E(true) == 1) {
Files.Capacity = reader.RI32E(true);
reader.RI32();
hasPerFileFlags = true;
}
}
reader.RI32E(true);
if (Files.Capacity == 0)
{
int Count = 0;
long Position = reader.PI64;
int Size = 0;
if (hasPerFileFlags)
Size = sizeof(int) * 4;
else if (Signature != Farc.FArc)
Size = sizeof(int) * 3;
else
Size = sizeof(int) * 2;
while (reader.PI64 < headerLength)
{
reader.NT();
reader.RI32();
if (Signature != Farc.FArc) reader.RI32();
reader.RI32();
if (Signature == Farc.FARC && Format == Format.FT) reader.RI32();
reader.RBy(Size);
Count++;
}
reader.PI64 = Position;
Files.Capacity = Count;
}
for (int i = 0; i < Files.Capacity; i++)
{
FARCFile file = default;
file.Name = reader.NTUTF8();
file.Offset = reader.RI32E(true);
if (Signature != Farc.FArc) file.SizeComp = reader.RI32E(true);
file.SizeUnc = reader.RI32E(true);
if (Signature == Farc.FARC && Format == Format.FT)
file.Type = (Type)reader.RI32E(true);
Files.Add(file);
}
if (hasPerFileFlags)
for (int i = 0; i < Files.Capacity; i++)
{
FARCFile file = default;
file.Name = reader.NTUTF8();
file.Offset = reader.RI32E(true);
file.SizeComp = reader.RI32E(true);
file.Size = reader.RI32E(true);
Flags Flags = (Flags)reader.RI32E(true);
if (file.Size != 0)
{
file.Compressed = true;
}
else
{
file.Size = file.SizeComp;
file.SizeComp = 0;
file.Compressed = false;
}
file.Encrypted = ((FARCFlags | Flags) & Flags.AES) != 0;
Files.Add(file);
}
else if (Signature != Farc.FArc)
for (int i = 0; i < Files.Capacity; i++)
{
FARCFile file = default;
file.Name = reader.NTUTF8();
file.Offset = reader.RI32E(true);
file.SizeComp = reader.RI32E(true);
file.Size = reader.RI32E(true);
if (file.Size != 0)
{
file.Compressed = true;
}
else
{
file.Size = file.SizeComp;
file.SizeComp = 0;
file.Compressed = false;
}
file.Encrypted = (FARCFlags & Flags.AES) != 0;
Files.Add(file);
}
else
for (int i = 0; i < Files.Capacity; i++)
{
FARCFile file = default;
file.Name = reader.NTUTF8();
file.Offset = reader.RI32E(true);
file.Size = reader.RI32E(true);
file.SizeComp = 0;
file.Compressed = false;
file.Encrypted = false;
Files.Add(file);
}
reader.Dispose();
return true;
}
private void FileReader()
{ for (int i = 0; i < Files.Count; i++) FileReader(i); }
public byte[] FileReader(string file)
{
if (!HasFiles) return null;
for (int i = 0; i < Files.Count; i++)
if (Files[i].Name.ToLower() == file.ToLower()) return FileReader(i);
return null;
}
public bool Exists(string file)
{
if (!HasFiles) return false;
@@ -134,101 +201,164 @@ namespace KKdMainLib
return false;
}
private void FileReader(bool saveToDisk)
{
if (saveToDisk)
MSIO.Directory.CreateDirectory(DirectoryPath);
Stream reader = File.OpenReader(FilePath);
for (int i = 0; i < Files.Count; i++)
FileReader(i, saveToDisk, ref reader);
reader.Dispose();
}
public byte[] FileReader(string file)
{
if (!HasFiles) return null;
for (int i = 0; i < Files.Count; i++)
if (Files[i].Name.ToLower() == file.ToLower())
return FileReader(i);
return null;
}
public byte[] FileReader(int i)
{
Stream reader = File.OpenReader(FilePath);
byte[] data = FileReader(i, false, ref reader);
reader.Dispose();
return data;
}
public byte[] FileReader(int i, bool saveToDisk, ref Stream reader)
{
if (!HasFiles) return null;
if (i >= Files.Count) return null;
FARCFile file = Files[i];
if (Signature != Farc.FARC)
file.Data = null;
reader.S(file.Offset, SeekOrigin.Begin);
if (Signature == Farc.FArc)
{
if (Signature == Farc.FArC)
using (MSIO.MemoryStream memorystream = new MSIO.MemoryStream(
File.ReadAllBytes(FilePath, file.SizeComp, file.Offset)))
using (GZipStream gZipStream = new GZipStream(memorystream, CompressionMode.Decompress))
{
file.Data = new byte[file.SizeUnc];
gZipStream.Read(file.Data, 0, file.SizeUnc);
}
else file.Data = File.ReadAllBytes(FilePath, file.SizeUnc, file.Offset);
Files[i] = file;
return file.Data;
file.DataComp = null;
file.Data = reader.RBy(file.Size);
}
int FileSize = (FARCType & Type.ECB) != 0 || (file.Type & Type.ECB) != 0 ?
file.SizeComp.A(0x10) : ((FARCType & Type.GZip) != 0 || (file.Type & Type.GZip) != 0 ? file.SizeComp : file.SizeUnc);
using (Stream stream = File.OpenReader(FilePath))
else if (Signature == Farc.FArC)
{
stream.S(file.Offset, 0);
file.Data = stream.RBy(FileSize);
}
if ((FARCType & Type.ECB) != 0)
{
if (Format == Format.FT && (file.Type & Type.ECB) != 0)
if (file.Compressed)
{
using (AesManaged aes = GetAes(true, null))
using (CryptoStream cryptoStream = new CryptoStream(new MSIO.MemoryStream(file.Data),
aes.CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(file.Data, 0, FileSize);
file.Data = SkipData(file.Data, 0x10);
file.DataComp = reader.RBy(file.SizeComp);
file.Data = file.DataComp.InflateGZip(file.Size);
}
else
using (AesManaged aes = GetAes(false, null))
using (CryptoStream cryptoStream = new CryptoStream(new MSIO.MemoryStream(file.Data),
aes.CreateDecryptor(), CryptoStreamMode.Read))
cryptoStream.Read(file.Data, 0, FileSize);
{
file.DataComp = null;
file.Data = reader.RBy(file.Size);
}
}
else if (file.Compressed || file.Encrypted)
{
int tempSize = file.Encrypted ? file.SizeComp.A(0x10) : file.SizeComp;
byte[] temp;
if (file.Encrypted)
if (FT)
{
file.SizeComp -= 0x10;
tempSize -= 0x10;
byte[] iv = reader.RBy(0x10);
using (MSIO.MemoryStream ms = new MSIO.MemoryStream())
{
using (AesManaged aes = GetAes(iv))
using (CryptoStream cryptoStream = new CryptoStream(ms,
aes.CreateDecryptor(), CryptoStreamMode.Write))
cryptoStream.Write(reader.RBy(tempSize), 0x00, tempSize);
temp = ms.ToArray();
file.SizeComp = temp.Length;
}
}
else
{
using (MSIO.MemoryStream ms = new MSIO.MemoryStream())
{
using (AesManaged aes = GetAes())
using (CryptoStream cryptoStream = new CryptoStream(ms,
aes.CreateDecryptor(), CryptoStreamMode.Write))
cryptoStream.Write(reader.RBy(tempSize), 0x00, tempSize);
temp = ms.ToArray();
}
}
else
temp = reader.RBy(tempSize);
if (file.Compressed)
{
file.DataComp = temp;
file.Data = file.DataComp.InflateGZip(file.Size);
}
else
{
file.DataComp = null;
file.Data = temp;
}
}
else
{
file.DataComp = null;
file.Data = reader.RBy(file.Size);
}
if (((Format == Format.FT && (file.Type & Type.GZip) != 0) ||
(FARCType & Type.GZip) != 0) && file.SizeUnc > 0)
file.Data = file.Data.InflateGZip(file.SizeUnc);
if (saveToDisk)
{
File.WriteAllBytes(Path.Combine(DirectoryPath, file.Name), file.Data);
file.DataComp = null;
file.Data = null;
}
Files[i] = file;
return file.Data;
return Files[i].Data;
}
private void SaveToDisk()
{
if (DirectoryPath == null || Files.IsNull ) return;
if (DirectoryPath == "" || Files.Count < 1) return;
MSIO.Directory.CreateDirectory(DirectoryPath);
for (int i = 0; i < Files.Count; i++)
{
FARCFile file = Files[i];
if (file.Data != null)
File.WriteAllBytes(Path.Combine(DirectoryPath, file.Name), file.Data);
}
}
private byte[] SkipData(byte[] data, int skip)
{
byte[] skipData = new byte[data.Length - skip];
System.Array.Copy(data, skip, skipData, 0, data.Length - skip);
return skipData;
}
public void Pack(Farc signature = Farc.FArC)
public void Pack()
{
NewFARC();
string[] files = Directory.GetFiles(DirectoryPath);
Files.Capacity = files.Length;
bool compressed = false;
bool encrypted = false;
switch (Signature)
{
case Farc.FARC:
compressed = (FARCFlags & Flags.GZip) != 0;
encrypted = (FARCFlags & Flags.AES) != 0;
break;
case Farc.FArC:
FARCFlags = Flags.None;
compressed = true;
break;
default:
FARCFlags = Flags.None;
break;
}
for (int i = 0; i < files.Length; i++)
Files.Add(new FARCFile { Name = Path.GetFileName(files[i]), Data = File.ReadAllBytes(files[i]) });
Files.Add(new FARCFile { Name = Path.GetFileName(files[i]),
Data = File.ReadAllBytes(files[i]), Compressed = compressed, Encrypted = encrypted });
files = null;
Signature = signature;
Save();
}
public void Save()
{
if (!HasFiles) return;
if (!HasFiles || (Signature != Farc.FArc && Signature != Farc.FArC && Signature != Farc.FARC)) return;
for (int i = 0; i < Files.Count; i++)
{
string ext = Path.GetExtension(Files[i].Name).ToLower();
if (ext == ".a3da" || ext == ".diva" || ext == ".vag")
if (ext == ".a3da" || ext == ".diva" || ext == ".farc" || ext == ".vag")
{ Signature = Farc.FArc; break; }
}
@@ -237,22 +367,28 @@ namespace KKdMainLib
using (Stream headerWriter = File.OpenWriter())
{
if (Signature == Farc.FArc) headerWriter.WE(0x20, true);
else if (Signature == Farc.FArC) headerWriter.WE(0x10, true);
else if (Signature == Farc.FARC)
switch (Signature)
{
headerWriter.WE((int)FARCType, true);
headerWriter.W (0x00);
headerWriter.WE(0x40, true);
headerWriter.W (0x00);
headerWriter.W (0x00);
case Farc.FArc:
headerWriter.WE(0x01, true);
for (int i = 0; i < Files.Count; i++)
{ headerWriter.W(Files[i].Name + "\0"); headerWriter.W(0x00L); }
break;
case Farc.FArC:
headerWriter.WE(0x01, true);
for (int i = 0; i < Files.Count; i++)
{ headerWriter.W(Files[i].Name + "\0"); headerWriter.W(0x00L); headerWriter.W(0x00); }
break;
case Farc.FARC:
headerWriter.WE((int)FARCFlags, true);
headerWriter.W (0x00);
headerWriter.WE(0x40, true);
headerWriter.W (0x00);
headerWriter.W (0x00);
for (int i = 0; i < Files.Count; i++)
{ headerWriter.W(Files[i].Name + "\0"); headerWriter.W(0x00L); headerWriter.W(0x00L); }
break;
}
if (Signature != Farc.FArc)
for (int i = 0; i < Files.Count; i++)
{ headerWriter.W(Files[i].Name + "\0"); headerWriter.W(0x00L); headerWriter.W(0x00); }
else
for (int i = 0; i < Files.Count; i++)
{ headerWriter.W(Files[i].Name + "\0"); headerWriter.W(0x00L); }
writer.WE(headerWriter.L, true);
writer.W (headerWriter.ToArray(true));
}
@@ -266,13 +402,55 @@ namespace KKdMainLib
CompressStuff(i, ref writer);
writer.P = Signature == Farc.FARC ? 0x1C : 0x0C;
for (int i = 0; i < Files.Count; i++)
switch (Signature)
{
FARCFile file = Files[i];
writer.W (file.Name + "\0");
writer.WE(file.Offset, true);
if (Signature != Farc.FArc) writer.WE(file.SizeComp, true);
writer.WE(file.SizeUnc, true);
case Farc.FArc:
for (int i = 0; i < Files.Count; i++)
{
FARCFile file = Files[i];
writer.W (file.Name + "\0");
writer.WE(file.Offset, true);
writer.WE(file.Size , true);
}
break;
case Farc.FArC:
for (int i = 0; i < Files.Count; i++)
{
FARCFile file = Files[i];
writer.W (file.Name + "\0");
writer.WE(file.Offset , true);
if (file.Compressed)
{
writer.WE(file.SizeComp, true);
writer.WE(file.Size , true);
}
else
{
writer.WE(file.Size , true);
writer.WE(0x00 , true);
}
}
break;
case Farc.FARC:
for (int i = 0; i < Files.Count; i++)
{
FARCFile file = Files[i];
writer.W (file.Name + "\0");
writer.WE(file.Offset , true);
if (file.Compressed)
{
writer.WE(file.SizeComp, true);
writer.WE(file.Size , true);
}
else
{
writer.WE(file.Size , true);
writer.WE(0x00 , true);
}
writer.WE((uint)((file.Compressed ? Flags.GZip : 0x00)
| (file.Encrypted ? Flags.AES : 0x00)), true);
}
break;
}
writer.Dispose();
}
@@ -281,25 +459,20 @@ namespace KKdMainLib
{
FARCFile file = Files[i];
file.Offset = writer.P;
file.SizeUnc = file.Data.Length;
file.Type = Type.None;
file.Size = file.Data.Length;
byte[] data = file.Data;
if (Signature == Farc.FArC || (Signature == Farc.FARC && (FARCType & Type.GZip) != 0))
{
file.Type |= Type.GZip;
if (file.Compressed)
data = file.Data.DeflateGZip(CompressionLevel);
file.SizeComp = data.Length;
}
file.SizeComp = data.Length;
if (Signature == Farc.FARC && (FARCType & Type.ECB) != 0)
if (file.Encrypted)
{
int alignLength = data.Length.A(0x40);
byte[] tempData = new byte[alignLength];
System.Array.Copy(data, tempData, data.Length);
for (int i1 = file.Data.Length; i1 < alignLength; i1++) tempData[i1] = 0x78;
data = Encrypt(tempData, false);
file.SizeComp = data.Length;
data = Encrypt(tempData);
}
writer.W(data);
@@ -312,26 +485,28 @@ namespace KKdMainLib
Files[i] = file;
}
private byte[] Encrypt(byte[] data, bool isFT)
private byte[] Encrypt(byte[] data)
{
MSIO.MemoryStream stream = new MSIO.MemoryStream();
using (AesManaged aes = GetAes(isFT, null))
using (CryptoStream cryptoStream = new CryptoStream(stream,
aes.CreateEncryptor(), CryptoStreamMode.Write))
cryptoStream.Write(data, 0, data.Length);
return stream.ToArray();
MSIO.MemoryStream ms = new MSIO.MemoryStream();
using (AesManaged aes = GetAes())
using (CryptoStream cryptoStream = new CryptoStream(ms,
aes.CreateDecryptor(), CryptoStreamMode.Write))
cryptoStream.Write(data, 0x00, data.Length);
return ms.ToArray();
}
public void Dispose() => NewFARC();
public struct FARCFile
{
public int Offset;
public int SizeComp;
public int SizeUnc;
public Type Type;
public byte[] Data;
public string Name;
public int Offset;
public int Size;
public int SizeComp;
public byte[] Data;
public byte[] DataComp;
public bool Compressed;
public bool Encrypted;
public override string ToString() => Name;
}
@@ -343,11 +518,11 @@ namespace KKdMainLib
FARC = 0x46415243,
}
public enum Type : int
public enum Flags : int
{
None = 0b000,
GZip = 0b010,
ECB = 0b100,
AES = 0b100,
}
}
}
+38 -21
View File
@@ -8,8 +8,17 @@ namespace KKdMainLib.IO
private const string libDeflateString = "libdeflate.dll";
public static void CheckLib()
{
if (!File.Exists(libDeflateString))
File.WriteAllBytes(libDeflateString, Properties.Resources.libdeflate);
HasFile = true;
}
public static byte[] Deflate(this byte[] data, long compressionLevel)
{
CheckLib();
void* c = libdeflate_alloc_compressor((int)compressionLevel);
int maxOutBytes = libdeflate_deflate_compress_bound(c, data.Length);
byte[] outData = new byte[maxOutBytes];
@@ -24,18 +33,19 @@ namespace KKdMainLib.IO
public static byte[] Inflate(this byte[] data, long length)
{
CheckLib();
byte[] outData = new byte[length];
int actualOut = 0;
void* d = libdeflate_alloc_decompressor();
fixed (byte* inPtr = data)
fixed (byte* outPtr = outData)
libdeflate_deflate_decompress(d, inPtr, data.Length, outPtr, (int)length, (byte*)&actualOut);
libdeflate_deflate_decompress(d, inPtr, data.Length, outPtr, (int)length, &actualOut);
libdeflate_free_decompressor(d);
if (actualOut == 0 || actualOut > length)
throw new System.Exception("DeflateInflate Error: specified input length" +
" is less than it should be for current Deflate data");
return data.Inflate(length * 2);
else if (actualOut < length)
System.Array.Resize(ref outData, (int)actualOut);
return outData;
@@ -43,8 +53,10 @@ namespace KKdMainLib.IO
public static byte[] DeflateGZip(this byte[] data, long compressionLevel)
{
CheckLib();
void* c = libdeflate_alloc_compressor((int)compressionLevel);
int maxOutBytes = libdeflate_deflate_compress_bound(c, data.Length);
int maxOutBytes = libdeflate_gzip_compress_bound(c, data.Length);
byte[] outData = new byte[maxOutBytes];
int actualOut = 0;
fixed (byte* inPtr = data)
@@ -57,18 +69,20 @@ namespace KKdMainLib.IO
public static byte[] InflateGZip(this byte[] data, long length)
{
CheckLib();
byte[] outData = new byte[length];
int result;
int actualOut = 0;
void* d = libdeflate_alloc_decompressor();
fixed (byte* inPtr = data)
fixed (byte* outPtr = outData)
libdeflate_gzip_decompress(d, inPtr, data.Length, outPtr, (int)length, (byte*)&actualOut);
result = libdeflate_gzip_decompress(d, inPtr, data.Length, outPtr, (int)length, &actualOut);
libdeflate_free_decompressor(d);
if (actualOut == 0 || actualOut > length)
throw new System.Exception("DeflateInflate Error: specified input length" +
" is less than it should be for current Deflate data");
return data.InflateGZip(length * 2 + 1);
else if (actualOut < length)
System.Array.Resize(ref outData, (int)actualOut);
return outData;
@@ -76,8 +90,10 @@ namespace KKdMainLib.IO
public static byte[] DeflateZLib(this byte[] data, long compressionLevel)
{
CheckLib();
void* c = libdeflate_alloc_compressor((int)compressionLevel);
int maxOutBytes = libdeflate_deflate_compress_bound(c, data.Length);
int maxOutBytes = libdeflate_zlib_compress_bound(c, data.Length);
byte[] outData = new byte[maxOutBytes];
int actualOut = 0;
fixed (byte* inPtr = data)
@@ -90,18 +106,19 @@ namespace KKdMainLib.IO
public static byte[] InflateZLib(this byte[] data, long length)
{
CheckLib();
byte[] outData = new byte[length];
int actualOut = 0;
void* d = libdeflate_alloc_decompressor();
fixed (byte* inPtr = data)
fixed (byte* outPtr = outData)
libdeflate_zlib_decompress(d, inPtr, data.Length, outPtr, (int)length, (byte*)&actualOut);
libdeflate_zlib_decompress(d, inPtr, data.Length, outPtr, (int)length, &actualOut);
libdeflate_free_decompressor(d);
if (actualOut == 0 || actualOut > length)
throw new System.Exception("DeflateInflate Error: specified input length" +
" is less than it should be for current Deflate data");
return data.InflateZLib(length * 2);
else if (actualOut < length)
System.Array.Resize(ref outData, (int)actualOut);
return outData;
@@ -121,12 +138,12 @@ namespace KKdMainLib.IO
byte* outData, int maxOutBytes);
[DllImport(libDeflateString)]
private static extern void libdeflate_deflate_decompress(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, byte* actualOutBytes);
private static extern int libdeflate_deflate_decompress(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, int* actualOutBytes);
[DllImport(libDeflateString)]
private static extern void libdeflate_deflate_decompress_ex(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, byte* actualInBytes, byte* actualOutBytes);
private static extern int libdeflate_deflate_decompress_ex(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, int* actualInBytes, int* actualOutBytes);
[DllImport(libDeflateString)]
private static extern int libdeflate_gzip_compress_bound(void* c, int length);
@@ -136,12 +153,12 @@ namespace KKdMainLib.IO
byte* outData, int maxOutBytes);
[DllImport(libDeflateString)]
private static extern void libdeflate_gzip_decompress(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, byte* actualOutBytes);
private static extern int libdeflate_gzip_decompress(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, int* actualOutBytes);
[DllImport(libDeflateString)]
private static extern void libdeflate_gzip_decompress_ex(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, byte* actualInBytes, byte* actualOutBytes);
private static extern int libdeflate_gzip_decompress_ex(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, int* actualInBytes, int* actualOutBytes);
[DllImport(libDeflateString)]
private static extern int libdeflate_zlib_compress_bound(void* c, int length);
@@ -151,8 +168,8 @@ namespace KKdMainLib.IO
byte* outData, int maxOutBytes);
[DllImport(libDeflateString)]
private static extern void libdeflate_zlib_decompress(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, byte* actualOutBytes);
private static extern int libdeflate_zlib_decompress(void* d, byte* inData, int inBytes,
byte* outData, int outBytesAvail, int* actualOutBytes);
[DllImport(libDeflateString)]
private static extern void libdeflate_free_compressor(void* c);
+22 -14
View File
@@ -18,6 +18,7 @@ namespace KKdMainLib.IO
if (a == end) break;
else s.Add(a);
}
s.Capacity = s.Count;
return s.ToArray();
}
@@ -65,22 +66,22 @@ namespace KKdMainLib.IO
}
public static long RIX(this Stream stream ) =>
stream.IsX ? stream.RI64() : stream.RI32E( );
stream.IsX ? stream.RI64E( ) : stream.RI32E( );
public static long RIX(this Stream stream, bool isBE) =>
stream.IsX ? stream.RI64() : stream.RI32E(isBE);
stream.IsX ? stream.RI64E(isBE) : stream.RI32E(isBE);
public static void WX(this Stream stream, long val, ref POF pof)
{ if (stream.IsX) stream.W ( val);
{ if (stream.IsX) stream.WE( val);
else stream.WE((int)val); pof.Offsets.Add(stream.P); }
public static void WX(this Stream stream, long val, ref POF pof, bool isBE)
{ if (stream.IsX) stream.W ( val );
{ if (stream.IsX) stream.WE( val, isBE);
else stream.WE((int)val, isBE); pof.Offsets.Add(stream.P); }
public static void WX(this Stream stream, long val)
{ if (stream.IsX) stream.W ( val);
{ if (stream.IsX) stream.WE( val);
else stream.WE((int)val); }
public static void WX(this Stream stream, long val, bool isBE)
{ if (stream.IsX) stream.W ( val );
{ if (stream.IsX) stream.WE( val, isBE);
else stream.WE((int)val, isBE); }
public static byte[] RaO(this Stream stream, long offset = -1, long length = -1)
@@ -97,28 +98,35 @@ namespace KKdMainLib.IO
public static string RSaO(this Stream stream)
{
long Position = stream.PI64 + (stream.IsX ? 8 : 4);
stream.PI64 = stream.RIX();
long offset = stream.RIX();
if (offset < 1)
return "";
long position = stream.PI64;
stream.PI64 = offset;
string s = stream.NTUTF8();
stream.PI64 = Position;
stream.PI64 = position;
return s;
}
public static string RSaO(this Stream stream, long offset)
{
long Position = stream.PI64;
long position = stream.PI64;
stream.PI64 = offset;
string s = stream.NTUTF8();
stream.PI64 = Position;
stream.PI64 = position;
return s;
}
public static string RSaO(this Stream stream, long offset, long length)
{
long Position = stream.PI64;
if (length < 1)
return "";
long position = stream.PI64;
stream.PI64 = offset;
string s = stream.RSUTF8(length);
stream.PI64 = Position;
stream.PI64 = position;
return s;
}
@@ -148,7 +156,7 @@ namespace KKdMainLib.IO
public static void W<T>(this Stream stream, Pointer<T> val) =>
stream.W(val.O);
public static CountPointer<T> ReadCountPointer<T>(this Stream stream) =>
public static CountPointer<T> RCP<T>(this Stream stream) =>
new CountPointer<T> { C = stream.RI32(), O = stream.RI32() };
public static void W<T>(this Stream stream, CountPointer<T> val)
+4 -4
View File
@@ -59,8 +59,8 @@ namespace KKdMainLib.IO
public static void WriteAllLines(string file, string[] data)
{ using Stream _IO = OpenWriter(file, true);
if (data != null) for (int i = 0; i < data.Length; i++)
{ if (data[i] != null) _IO.W(data[i]); } _IO.W("\r\n"); }
if (data != null) { int c = data.Length; for (int i = 0; i < c; i++)
{ if (data[i] != null) _IO.W(data[i]); if (i + 1 < c) _IO.W("\n"); } } }
public static void WriteAllBytes(string file, byte[] data, long length)
{ using Stream _IO = OpenWriter(file, true); if (data != null) { _IO.W(data); _IO.LI64 = length; } }
@@ -70,8 +70,8 @@ namespace KKdMainLib.IO
public static void WriteAllLines(string file, string[] data, long length)
{ using Stream _IO = OpenWriter(file, true);
if (data != null) for (int i = 0; i < data.Length; i++)
{ if (data[i] != null) _IO.W(data[i]); _IO.W("\r\n"); } _IO.LI64 = length; }
if (data != null) { int c = data.Length; for (int i = 0; i < c; i++)
{ if (data[i] != null) _IO.W(data[i]); if (i + 1 < c) _IO.W("\n"); } _IO.LI64 = length; } }
public static bool Exists(string file) =>
MSIOF.Exists(file);
+499 -151
View File
@@ -1,12 +1,26 @@
//Original or reader part: https://github.com/MarcosLopezC/LightJson/
using KKdBaseLib;
using System;
using System.IO;
using BaseExtensions = KKdBaseLib.Extensions;
namespace KKdMainLib.IO
{
public struct JSON : System.IDisposable
{
struct ReadBuffer
{
public char[] data;
public int first;
public int length;
public ReadBuffer(int size)
{
data = new char[size];
first = 0;
length = 0;
}
};
public JSON(Stream _IO) => this._IO = _IO;
private Stream _IO;
@@ -15,178 +29,512 @@ namespace KKdMainLib.IO
public byte[] ToArray(bool Close = false) => _IO.ToArray(Close);
public MsgPack Read() => ReadValue();
private MsgPack ReadValue(string Key = null)
public MsgPack Read()
{
char c = _IO.SW().PCUTF8();
object obj = null;
if (char.IsDigit(c))
obj = RF();
else
obj = c switch
{
'"' => RS (),
'{' => RO (),
'[' => RA (),
'-' => RF (),
't' => RBo(),
'f' => RBo(),
'n' => RN (),
_ => null ,
};
return new MsgPack(Key, obj);
ReadBuffer buf = new ReadBuffer(0x400);
buf.first = 0;
buf.length = 0;
buf.data[0] = '\0';
buf.data[buf.data.Length - 1] = '\0';
int c = ReadChar(ref buf);
return new MsgPack(null, ReadInner(ref buf, ref c));
}
private string RS()
int ReadChar(ref ReadBuffer buf)
{
if (!Extensions.As(_IO, '"')) return null;
char c;
string s = "";
while (true)
if (buf.length == 0)
{
c = _IO.RCUTF8();
buf.first = 1;
buf.data[0] = buf.data[buf.data.Length - 1];
byte[] temp = new byte[buf.data.Length];
buf.length = _IO.RBy(buf.data.Length - 1, temp);
Array.Copy(temp, 0, buf.data, 1, buf.length);
}
if (buf.length < 1)
return -1;
int c = buf.data[buf.first];
buf.first++;
buf.length--;
return c;
}
void Seek(ref ReadBuffer buf, long offset)
{
if (buf.first < offset || offset >= buf.length - 1L) {
long pos = _IO.PI64 - buf.length - offset;
long off = pos % buf.data.Length;
pos -= off;
if (pos > 1)
{
_IO.S(pos, SeekOrigin.Begin);
buf.first = (int)off;
byte[] temp = _IO.RBy(buf.data.Length);
buf.length = temp.Length;
Array.Copy(temp, 0, buf.data, 0, temp.Length);
}
else
{
_IO.S(pos, SeekOrigin.Begin);
buf.first = (int)(off + 1);
buf.data[0] = '\0';
byte[] temp = _IO.RBy(buf.data.Length - 1);
buf.length = temp.Length;
Array.Copy(temp, 0, buf.data, 1, temp.Length);
}
buf.length -= (int)off;
}
else
{
buf.first -= (int)offset;
buf.length += (int)offset;
}
}
void SeekOne(ref ReadBuffer buf)
{
buf.first--;
buf.length++;
}
object ReadInner(ref ReadBuffer buf, ref int c)
{
if (c == -1)
return null;
if (c == ' ' || c == '\n' || c == '\r' || c == '\t')
c = ReadChar(ref buf);
switch (c)
{
case '0':
case '1':
case '2':
case '3':
case '4':
case '5':
case '6':
case '7':
case '8':
case '9':
case '-':
return ReadFloat(ref buf, ref c);
case '"':
return ReadString(ref buf, ref c);
case '{':
return ReadMap(ref buf, ref c);
case '[':
return ReadArray(ref buf, ref c);
case 't':
return ReadBool(ref buf, ref c);
case 'f':
return ReadBool(ref buf, ref c);
case 'n':
return ReadNull(ref buf, ref c);
}
return null;
}
void ReadDigit(ref ReadBuffer buf, ref int c, byte[] dig_buf, ref int dig_buf_pos, int dig_buf_end) {
int b = dig_buf_pos;
while (c >= '0' && c <= '9' && b < dig_buf_end) {
dig_buf[b++] = (byte)c;
if ((c = ReadChar(ref buf)) == -1)
break;
}
dig_buf_pos = b;
}
object ReadFloat(ref ReadBuffer buf, ref int c)
{
byte[] dig_buf = new byte[0x100];
int buf_pos = 0;
int buf_end = dig_buf.Length;
bool negate = false;
bool zero = false;
bool fraction = false;
if (c == '-')
{
dig_buf[buf_pos++] = (byte)c;
if ((c = ReadChar(ref buf)) == -1)
return null;
negate = true;
}
if (c == '0')
{
dig_buf[buf_pos++] = (byte)c;
if ((c = ReadChar(ref buf)) == -1)
return null;
zero = true;
}
else
ReadDigit(ref buf, ref c, dig_buf, ref buf_pos, buf_end);
if (c == '.')
{
dig_buf[buf_pos++] = (byte)c;
if ((c = ReadChar(ref buf)) == -1)
return null;
ReadDigit(ref buf, ref c, dig_buf, ref buf_pos, buf_end);
fraction = true;
}
if (zero && !fraction)
{
object obj;
if (negate)
obj = -0.0f;
else
obj = 0;
SeekOne(ref buf);
return obj;
}
else if (c != 'e' && c != 'E' && !fraction)
{
string temp = dig_buf.ToUTF8();
int null_term = temp.IndexOf('\0');
if (null_term >= 0)
temp = temp.Substring(0, null_term);
if (!long.TryParse(temp, out long val))
return null;
object obj;
unchecked
{
if (val >= 0x00 && val <= 0xFF)
obj = (byte)val;
else if (val >= (sbyte)0x80 && val <= (sbyte)0x7F)
obj = (sbyte)val;
else if (val >= 0x0000 && val <= 0xFFFF)
obj = (ushort)val;
else if (val >= (short)0x8000 && val <= (short)0x7FFF)
obj = (short)val;
else if (val >= 0x00000000 && val <= 0xFFFFFFFF)
obj = (uint)val;
else if (val >= (int)0x80000000 && val <= (int)0x7FFFFFFF)
obj = (int)val;
else
obj = val;
}
SeekOne(ref buf);
return obj;
}
else if (c == 'e' || c == 'E')
{
dig_buf[buf_pos++] = (byte)c;
if ((c = ReadChar(ref buf)) == -1)
return null;
if (c == '+' || c == '-')
{
dig_buf[buf_pos++] = (byte)c;
if ((c = ReadChar(ref buf)) == -1)
return null;
}
ReadDigit(ref buf, ref c, dig_buf, ref buf_pos, buf_end);
}
string ftemp = dig_buf.ToUTF8();
int fnull_term = ftemp.IndexOf('\0');
if (fnull_term >= 0)
ftemp = ftemp.Substring(0, fnull_term);
if (!ftemp.ToF64(out double fval))
return null;
object fobj;
if (fval == (float)fval)
fobj = (float)fval;
else
fobj = fval;
SeekOne(ref buf);
return fobj;
}
byte ReadStringHex(int c)
{
if (c >= '0' && c <= '9')
return (byte)(c - '0');
else if (c >= 'A' && c <= 'F')
return (byte)(c - 'A' + 0xA);
else if (c >= 'a' && c <= 'f')
return (byte)(c - 'a' + 0xA);
else
return 0;
}
string ReadStringInner(ref ReadBuffer buf, ref int c)
{
if (c != '"')
return null;
long pos = _IO.PI64 - buf.length;
ulong len = 0;
while (c != -1)
{
c = ReadChar(ref buf);
if (c == '\\')
{
if ((c = ReadChar(ref buf)) == -1)
break;
switch (c)
{
case '"':
case '\\':
case '/':
case 'b':
case 'f':
case 'n':
case 'r':
case 't':
len++;
break;
case 'u':
{
uint uc = 0;
if ((c = ReadChar(ref buf)) == -1)
break;
uc |= (uint)ReadStringHex(c) << 24;
if ((c = ReadChar(ref buf)) == -1)
break;
uc |= (uint)ReadStringHex(c) << 16;
if ((c = ReadChar(ref buf)) == -1)
break;
uc |= (uint)ReadStringHex(c) << 8;
if ((c = ReadChar(ref buf)) == -1)
break;
uc |= (uint)ReadStringHex(c);
if (uc <= 0x7F)
len++;
else if (c <= 0x7FF)
len += 2;
else
len += 3;
}
break;
}
}
else if (c == '"')
break;
else
len++;
}
if (c == -1)
return null;
long pos_end = _IO.PI64 - buf.length;
Seek(ref buf, pos_end - pos);
byte[] temp = new byte[len + 1];
for (ulong i = 0; i < len;)
{
c = ReadChar(ref buf);
if (c == '\\')
{
c = _IO.RCUTF8();
c = ReadChar(ref buf);
switch (char.ToLower(c))
switch (c)
{
case '"' :
case '"':
temp[i++] = (byte)'"';
break;
case '\\':
case '/' : s += c; break;
case 'b' : s += '\b'; break;
case 'f' : s += '\f'; break;
case 'n' : s += '\n'; break;
case 'r' : s += '\r'; break;
case 't' : s += '\t'; break;
case 'u' : s += RUL(); break;
default: return null;
temp[i++] = (byte)'\\';
break;
case '/':
temp[i++] = (byte)'/';
break;
case 'b':
temp[i++] = (byte)'\b';
break;
case 'f':
temp[i++] = (byte)'\f';
break;
case 'n':
temp[i++] = (byte)'\n';
break;
case 'r':
temp[i++] = (byte)'\r';
break;
case 't':
temp[i++] = (byte)'\t';
break;
case 'u':
{
uint uc = 0;
uc |= (uint)ReadStringHex(ReadChar(ref buf)) << 24;
uc |= (uint)ReadStringHex(ReadChar(ref buf)) << 16;
uc |= (uint)ReadStringHex(ReadChar(ref buf)) << 8;
uc |= (uint)ReadStringHex(ReadChar(ref buf));
if (uc <= 0x7F)
temp[i] = (byte)uc;
else if (uc <= 0x7FF)
{
temp[i++] = (byte)(0xC0 | ((uc >> 6) & 0x1F));
temp[i] = (byte)(0x80 | (uc & 0x3F));
}
else
{
temp[i++] = (byte)(0xE0 | ((uc >> 12) & 0xF));
temp[i++] = (byte)(0x80 | ((uc >> 6) & 0x3F));
temp[i++] = (byte)(0x80 | (uc & 0x3F));
}
}
break;
}
}
else if (c == '"') break;
else if (char.IsControl(c))
else if (c == '"')
break;
else
temp[i++] = (byte)c;
}
if ((c = ReadChar(ref buf)) == -1)
return null;
string str = temp.ToUTF8();
int null_term = str.IndexOf('\0');
if (null_term >= 0)
str = str.Substring(0, null_term);
return str;
}
object ReadString(ref ReadBuffer buf, ref int c)
{
return ReadStringInner(ref buf, ref c);
}
void ReadSkipWhitespace(ref ReadBuffer buf, ref int c)
{
while ((c = ReadChar(ref buf)) != -1)
{
if (c == ' ' || c == '\n' || c == '\r' || c == '\t')
continue;
break;
}
}
object ReadMap(ref ReadBuffer buf, ref int c)
{
KKdList<MsgPack> map = KKdList<MsgPack>.New;
if (c != '}')
{
while (true)
{
ReadSkipWhitespace(ref buf, ref c);
if (c == '}')
break;
string key = ReadStringInner(ref buf, ref c);
if (key == null)
return null;
ReadSkipWhitespace(ref buf, ref c);
if (c != ':')
return null;
ReadSkipWhitespace(ref buf, ref c);
map.Add(new MsgPack(key, ReadInner(ref buf, ref c)));
ReadSkipWhitespace(ref buf, ref c);
if (c == '}')
break;
else if (c != ',')
return null;
}
}
map.Capacity = map.Count;
return map;
}
object ReadArray(ref ReadBuffer buf, ref int c)
{
KKdList<MsgPack> array = KKdList<MsgPack>.New;
if (c != ']')
{
while (true)
{
ReadSkipWhitespace(ref buf, ref c);
if (c == ']')
break;
array.Add(new MsgPack(null, ReadInner(ref buf, ref c)));
ReadSkipWhitespace(ref buf, ref c);
if (c == ']')
break;
else if (c != ',')
return null;
}
}
array.Capacity = array.Count;
return array.ToArray();
}
object ReadBool(ref ReadBuffer buf, ref int c)
{
if (c != 't')
{
if ((c = ReadChar(ref buf)) == -1 || c != 'a')
return null;
else s += c;
if ((c = ReadChar(ref buf)) == -1 || c != 'l')
return null;
if ((c = ReadChar(ref buf)) == -1 || c != 's')
return null;
if ((c = ReadChar(ref buf)) == -1 || c != 'e')
return null;
return false;
}
return s;
}
private char RUL() =>
(char)((((((RHD() << 4) | RHD()) << 4) | RHD()) << 4) | RHD());
private int RHD() => byte.Parse(_IO.RCUTF8().ToString(),
System.Globalization.NumberStyles.HexNumber);
private KKdList<MsgPack> RO()
{
KKdList<MsgPack> obj = KKdList<MsgPack>.New;
if (!Extensions.As(_IO, '{')) return KKdList<MsgPack>.Null;
if (_IO.SW().PCUTF8() == '}')
{ _IO.RCUTF8(); return KKdList<MsgPack>.Null; }
string key;
char c;
while (true)
else
{
_IO.SW();
key = RS();
if (!Extensions.As(_IO.SW(), ':'))
return KKdList<MsgPack>.Null;
obj.Add(ReadValue(key));
c = _IO.SW().PCUTF8();
if (c == '}') { _IO.RCUTF8(); break; }
else if (c == ',') { _IO.RCUTF8(); continue; }
else return KKdList<MsgPack>.Null;
if ((c = ReadChar(ref buf)) == -1 || c != 'r')
return null;
if ((c = ReadChar(ref buf)) == -1 || c != 'u')
return null;
if ((c = ReadChar(ref buf)) == -1 || c != 'e')
return null;
return true;
}
return obj;
}
private MsgPack[] RA()
object ReadNull(ref ReadBuffer buf, ref int c)
{
KKdList<MsgPack> obj = KKdList<MsgPack>.New;
if (!Extensions.As(_IO, '[')) return null;
if (_IO.SW().PCUTF8() == ']')
{ _IO.RCUTF8(); return obj.ToArray(); }
if ((c = ReadChar(ref buf)) == -1 || c != 'u')
return null;
if ((c = ReadChar(ref buf)) == -1 || c != 'l')
return null;
if ((c = ReadChar(ref buf)) == -1 || c != 'l')
return null;
char c;
while (true)
{
obj.Add(ReadValue(null));
c = _IO.SW().PCUTF8();
if (c == ']') { _IO.RCUTF8(); break; }
else if (c == ',') { _IO.RCUTF8(); continue; }
else return null;
}
return obj.ToArray();
return null;
}
private object RF()
{
string s = " ";
_IO.SW();
if (_IO.PCUTF8() == '-') s += _IO.RCUTF8();
if (_IO.PCUTF8() == '0') s += _IO.RCUTF8();
else s += RD ();
char c = _IO.PCUTF8();
if (c == '.') s += _IO.RCUTF8() + RD();
else if (c != 'e' && c != 'E')
{
long val = long.Parse(s);
if (val >= 0x00000000 && val < 0x000000100) return ( byte)val;
else if (val >= -0x00000080 && val < 0x000000080) return ( sbyte)val;
else if (val >= -0x00008000 && val < 0x000008000) return ( short)val;
else if (val >= 0x00000000 && val < 0x000010000) return (ushort)val;
else if (val >= -0x80000000 && val < 0x000800000) return ( int)val;
else if (val >= 0x00000000 && val < 0x100000000) return ( uint)val;
else return val;
}
public JSON W(MsgPack msgPack, bool ignoreNull, string end = "\n", string tabChar = " ") =>
W(msgPack, ignoreNull, end, tabChar, "", true);
c = _IO.PCUTF8();
if (c == 'e' || c == 'E')
{
s += _IO.RCUTF8();
c = _IO.PCUTF8();
if (c == '+' || c == '-') s += _IO.RCUTF8();
s += RD();
}
double d = s.ToF64();
return (float)d == d ? (float)d : d;
}
public JSON W(MsgPack msgPack, bool ignoreNull, bool style = false) =>
W(msgPack, ignoreNull, "\n", " ", "", style);
private bool RBo()
{
char c = _IO.PCUTF8();
if (c == 't' && _IO.As( "true")) return true;
else if (c == 'f' && _IO.As("false")) return false;
return false;
}
private object RN() { _IO.As("null"); return null; }
private string RD()
{ string s = ""; while (char.IsDigit(_IO.SW().
PCUTF8())) s += _IO.RCUTF8(); return s; }
public JSON W(MsgPack msgPack, string end = "\n", string tabChar = " ") =>
W(msgPack, end, tabChar, "", true);
public JSON W(MsgPack msgPack, bool style = false) =>
W(msgPack, "\n", " ", "", style);
private JSON W(MsgPack msgPack, string end, string tabChar, string tab, bool style, bool isArray = false)
private JSON W(MsgPack msgPack, bool ignoreNull, string end,
string tabChar, string tab, bool style, bool isArray = false)
{
string oldTab = tab;
tab += tabChar;
if (msgPack.Name != null && !isArray) _IO.W("\"" + msgPack.Name + "\":" + (style ? " " : ""));
if (msgPack.Object == null) { WN(); return this; }
if (msgPack.Name != null && !isArray ) _IO.W("\"" + msgPack.Name + "\":" + (style ? " " : ""));
if (msgPack.Object == null) { if (!ignoreNull) WN(); return this; }
if (msgPack.List.NotNull)
{
@@ -196,14 +544,14 @@ namespace KKdMainLib.IO
for (int i = 0; i < msgPack.List.Count; i++)
{
if (style) _IO.W(tab);
W(msgPack.List[i], end, tabChar, tab, style);
W(msgPack.List[i], ignoreNull, end, tabChar, tab, style);
if (i + 1 < msgPack.List.Count) _IO.W(',');
if (style) _IO.W(end);
}
else if (msgPack.List.Count == 1)
{
if (style) _IO.W(tab);
W(msgPack.List[0], end, tabChar, tab, style);
W(msgPack.List[0], ignoreNull, end, tabChar, tab, style);
if (style) _IO.W(end);
}
if (style) _IO.W(oldTab);
@@ -217,20 +565,20 @@ namespace KKdMainLib.IO
for (int i = 0; i < msgPack.Array.Length; i++)
{
if (style) _IO.W(tab);
W(msgPack.Array[i], end, tabChar, tab, style, true);
W(msgPack.Array[i], ignoreNull, end, tabChar, tab, style, true);
if (i + 1 < msgPack.Array.Length) _IO.W(',');
if (style) _IO.W(end);
}
else if (msgPack.Array.Length == 1)
{
if (style) _IO.W(tab);
W(msgPack.Array[0], end, tabChar, tab, style, true);
W(msgPack.Array[0], ignoreNull, end, tabChar, tab, style, true);
if (style) _IO.W(end);
}
if (style) _IO.W(oldTab);
WA(true);
}
else if (msgPack.Object is MsgPack msg) W(msg, end, tabChar, tab, style);
else if (msgPack.Object is MsgPack msg) W(msg, ignoreNull, end, tabChar, tab, style);
else if (msgPack.Object is string str) W(str);
else _IO.W(BaseExtensions.ToS(msgPack.Object));
+342 -342
View File
@@ -1,342 +1,342 @@
using KKdBaseLib;
namespace KKdMainLib.IO
{
public struct MP : System.IDisposable
{
public MP(Stream _IO) => this._IO = _IO;
private Stream _IO;
public void Close() => _IO.C();
public byte[] ToArray(bool Close = false) => _IO.ToArray(Close);
public MsgPack Read(bool array = false)
{
MsgPack msgPack = MsgPack.New;
byte unk = _IO.RU8();
if (!array) { msgPack.Name = RS((Types)unk); unk = _IO.RU8(); }
Types type = (Types)unk;
if (type >= Types.FixMap && type <= Types.FixMapMax)
{
msgPack.Object = KKdList<MsgPack>.New;
for (int i = 0; i < unk - (byte)Types.FixMap; i++) msgPack.Add( Read(false));
}
else if (type >= Types.FixArr && type <= Types.FixArrMax)
{
msgPack.Object = new MsgPack[unk - (byte)Types.FixArr];
for (int i = 0; i < unk - (byte)Types.FixArr; i++) msgPack[i] = Read( true);
}
else if (type >= Types.FixStr && type <= Types.FixStrMax) msgPack.Object = RS(type);
else if (type >= Types.PosInt && type <= Types.PosIntMax) msgPack.Object = unk;
else if (type >= Types.NegInt && type <= Types.NegIntMax) msgPack.Object = (sbyte)unk;
else
while (true)
{
if (RN (ref msgPack, ref type)) break;
if (RBy(ref msgPack, ref type)) break;
if (RM (ref msgPack, ref type)) break;
if (RE (ref msgPack, ref type)) break;
if (RS (ref msgPack, ref type)) break;
if (RBo(ref msgPack, ref type)) break;
if (RA (ref msgPack, ref type)) break;
if (RI (ref msgPack, ref type)) break;
if (RU (ref msgPack, ref type)) break;
if (RF (ref msgPack, ref type)) break;
break;
}
return msgPack;
}
private bool RI(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Int8 ) msgPack.Object = _IO.RI8();
else if (type == Types.Int16) msgPack.Object = _IO.RI16E(true);
else if (type == Types.Int32) msgPack.Object = _IO.RI32E(true);
else if (type == Types.Int64) msgPack.Object = _IO.RI64E(true);
else return false;
return true;
}
private bool RU(ref MsgPack msgPack, ref Types type)
{
if (type == Types.UInt8 ) msgPack.Object = _IO.RU8();
else if (type == Types.UInt16) msgPack.Object = _IO.RU16E(true);
else if (type == Types.UInt32) msgPack.Object = _IO.RU32E(true);
else if (type == Types.UInt64) msgPack.Object = _IO.RU64E(true);
else return false;
return true;
}
private bool RF(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Float32) msgPack.Object = _IO.RF32E(true);
else if (type == Types.Float64) msgPack.Object = _IO.RF64E(true);
else return false;
return true;
}
private bool RBo(ref MsgPack msgPack, ref Types type)
{
if (type == Types.False) msgPack.Object = false;
else if (type == Types.True ) msgPack.Object = true ;
else return false;
return true;
}
private bool RBy(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Bin8 ) Length = _IO.RU8();
else if (type == Types.Bin16) Length = _IO.RI16E(true);
else if (type == Types.Bin32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = _IO.RBy(Length);
return true;
}
private bool RS(ref MsgPack msgPack, ref Types type)
{
string val = RS(type);
if (val != null) msgPack.Object = val;
else return false;
return true;
}
private string RS(Types val)
{
if (val >= Types.FixStr && val <= Types.FixStrMax)
return _IO.RS(val - Types.FixStr);
else if (val >= Types. Str8 && val <= Types. Str32 )
{
System.Enum.TryParse(val.ToString(), out Types type);
int Length = 0;
if (type == Types.Str8 ) Length = _IO.RU8();
else if (type == Types.Str16) Length = _IO.RI16E(true);
else Length = _IO.RI32E(true);
return _IO.RS(Length);
}
return null;
}
private bool RN(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Nil) msgPack.Object = null;
else return false;
return true;
}
private bool RA(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Arr16) Length = _IO.RI16E(true);
else if (type == Types.Arr32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = new MsgPack[Length];
for (int i = 0; i < Length; i++) msgPack[i] = Read(true);
return true;
}
private bool RM(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Map16) Length = _IO.RI16E(true);
else if (type == Types.Map32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = KKdList<MsgPack>.New;
for (int i = 0; i < Length; i++) msgPack.Add(Read());
return true;
}
private bool RE(ref MsgPack MsgPack, ref Types type)
{
int Length = 0;
if (type == Types.FixExt1 ) Length = 1 ;
else if (type == Types.FixExt2 ) Length = 2 ;
else if (type == Types.FixExt4 ) Length = 4 ;
else if (type == Types.FixExt8 ) Length = 8 ;
else if (type == Types.FixExt16) Length = 16;
else if (type == Types. Ext8 ) Length = _IO.RU8();
else if (type == Types. Ext16) Length = _IO.RI16E(true);
else if (type == Types. Ext32) Length = _IO.RI32E(true);
else return false;
MsgPack.Object = new MsgPack.Ext { Type = _IO.RI8(), Data = _IO.RBy(Length) };
return true;
}
public MP W(MsgPack msgPack, bool IsArray = false)
{
if (msgPack.Name != null && !IsArray) W(msgPack.Name);
Write(msgPack.Object);
return this;
}
private void Write(object obj)
{
if (obj == null) { WN(); return; }
switch (obj)
{
case KKdList<MsgPack> val: WM(val.Count );
for (int i = 0; i < val.Count ; i++) W(val[i]); break;
case MsgPack[] val: WA(val.Length);
for (int i = 0; i < val.Length; i++) W(val[i]); break;
case MsgPack val: W(val); break;
case byte[] val: W(val); break;
case bool val: W(val); break;
case sbyte val: W(val); break;
case byte val: W(val); break;
case short val: W(val); break;
case ushort val: W(val); break;
case int val: W(val); break;
case uint val: W(val); break;
case long val: W(val); break;
case ulong val: W(val); break;
case float val: W(val); break;
case double val: W(val); break;
case string val: W(val); break;
case MsgPack.Ext val: W(val); break;
}
}
private void W( sbyte val) { if (val < -0x20) _IO.W((byte)0xD0); _IO.W(val); }
private void W( byte val) { if (val >= 0x80) _IO.W((byte)0xCC); _IO.W(val); }
private void W( short val) { if (( sbyte)val == val) W(( sbyte)val);
else if (( byte)val == val) W(( byte)val);
else { _IO.W((byte)0xD1); _IO.WE(val, true); } }
private void W(ushort val) { if (( byte)val == val) W(( byte)val);
else { _IO.W((byte)0xCD); _IO.WE(val, true); } }
private void W( int val) { if (( short)val == val) W(( short)val);
else if ((ushort)val == val) W((ushort)val);
else { _IO.W((byte)0xD2); _IO.WE(val, true); } }
private void W( uint val) { if ((ushort)val == val) W((ushort)val);
else { _IO.W((byte)0xCE); _IO.WE(val, true); } }
private void W( long val) { if (( int)val == val) W(( int)val);
else if (( uint)val == val) W(( uint)val);
else { _IO.W((byte)0xD3); _IO.WE(val, true); } }
private void W( ulong val) { if (( uint)val == val) W(( uint)val);
else { _IO.W((byte)0xCF); _IO.WE(val, true); } }
private void W( float val) { if (( long)val == val) W(( long)val);
else { _IO.W((byte)0xCA); _IO.WE(val, true); } }
private void W(double val) { if (( long)val == val) W(( long)val);
else if (( float)val == val) W(( float)val);
else { _IO.W((byte)0xCB); _IO.WE(val, true); } }
private void W( bool val) =>
_IO.W((byte)(val ? 0xC3 : 0xC2));
private void W(byte[] val)
{
if (val == null) { WN(); return; }
if (val.Length < 0x100) { _IO.W((byte)0xC4); _IO.W (( byte)val.Length ); }
else if (val.Length < 0x10000) { _IO.W((byte)0xC5); _IO.WE((ushort)val.Length, true); }
else { _IO.W((byte)0xC6); _IO.WE( val.Length, true); }
_IO.W(val);
}
private void W(string val)
{
if (val == null) { WN(); return; }
byte[] array = Text.ToUTF8(val);
if (array.Length < 0x20) _IO.W((byte)(0xA0 | (array.Length & 0x1F)));
else if (array.Length < 0x100) { _IO.W((byte)0xD9); _IO.W (( byte)array.Length); }
else if (array.Length < 0x10000) { _IO.W((byte)0xDA); _IO.WE((ushort)array.Length, true); }
else { _IO.W((byte)0xDB); _IO.WE( array.Length, true); }
_IO.W(array);
}
private void WN() => _IO.W((byte)0xC0);
private void WA(int val)
{
if (val == 0) { WN(); return; }
else if (val < 0x10) _IO.W((byte)(0x90 | (val & 0x0F)));
else if (val < 0x10000) { _IO.W((byte)0xDC); _IO.WE((ushort)val, true); }
else { _IO.W((byte)0xDD); _IO.WE( val, true); }
}
private void WM(int val)
{
if (val == 0) { WN(); return; }
else if (val < 0x10) _IO.W((byte)(0x80 | (val & 0x0F)));
else if (val < 0x10000) { _IO.W((byte)0xDE); _IO.WE((ushort)val, true); }
else { _IO.W((byte)0xDF); _IO.WE( val, true); }
}
private void W(MsgPack.Ext val) => WE(val);
private void WE(MsgPack.Ext val)
{
if (val.Data == null) { WN(); return; }
if (val.Data.Length < 1 ) { WN(); return; }
else if (val.Data.Length == 1 ) _IO.W((byte)0xD4);
else if (val.Data.Length == 2 ) _IO.W((byte)0xD5);
else if (val.Data.Length == 4 ) _IO.W((byte)0xD6);
else if (val.Data.Length == 8 ) _IO.W((byte)0xD7);
else if (val.Data.Length == 16) _IO.W((byte)0xD8);
else
{
if (val.Data.Length < 0x100)
{ _IO.W((byte)0xC7); _IO.W (( byte)val.Data.Length); }
else if (val.Data.Length < 0x10000)
{ _IO.W((byte)0xC8); _IO.WE((ushort)val.Data.Length, true); }
else
{ _IO.W((byte)0xC9); _IO.WE( val.Data.Length, true); }
}
_IO.W(val.Type);
_IO.W(val.Data);
}
public void Dispose() => _IO.C();
}
public enum Types : byte
{
PosInt = 0b00000000,
FixMap = 0b10000000,
FixArr = 0b10010000,
FixStr = 0b10100000,
Nil = 0b11000000,
NeverUsed = 0b11000001,
False = 0b11000010,
True = 0b11000011,
Bin8 = 0b11000100,
Bin16 = 0b11000101,
Bin32 = 0b11000110,
Ext8 = 0b11000111,
Ext16 = 0b11001000,
Ext32 = 0b11001001,
Float32 = 0b11001010,
Float64 = 0b11001011,
UInt8 = 0b11001100,
UInt16 = 0b11001101,
UInt32 = 0b11001110,
UInt64 = 0b11001111,
Int8 = 0b11010000,
Int16 = 0b11010001,
Int32 = 0b11010010,
Int64 = 0b11010011,
FixExt1 = 0b11010100,
FixExt2 = 0b11010101,
FixExt4 = 0b11010110,
FixExt8 = 0b11010111,
FixExt16 = 0b11011000,
Str8 = 0b11011001,
Str16 = 0b11011010,
Str32 = 0b11011011,
Arr16 = 0b11011100,
Arr32 = 0b11011101,
Map16 = 0b11011110,
Map32 = 0b11011111,
NegInt = 0b11100000,
PosIntMax = 0b01111111,
FixMapMax = 0b10001111,
FixArrMax = 0b10011111,
FixStrMax = 0b10111111,
NegIntMax = 0b11111111,
}
}
using KKdBaseLib;
namespace KKdMainLib.IO
{
public struct MP : System.IDisposable
{
public MP(Stream _IO) => this._IO = _IO;
private Stream _IO;
public void Close() => _IO.C();
public byte[] ToArray(bool Close = false) => _IO.ToArray(Close);
public MsgPack Read(bool array = false)
{
MsgPack msgPack = MsgPack.New;
byte unk = _IO.RU8();
if (!array) { msgPack.Name = RS((Types)unk); unk = _IO.RU8(); }
Types type = (Types)unk;
if (type >= Types.FixMap && type <= Types.FixMapMax)
{
msgPack.Object = KKdList<MsgPack>.New;
for (int i = 0; i < unk - (byte)Types.FixMap; i++) msgPack.Add( Read(false));
}
else if (type >= Types.FixArr && type <= Types.FixArrMax)
{
msgPack.Object = new MsgPack[unk - (byte)Types.FixArr];
for (int i = 0; i < unk - (byte)Types.FixArr; i++) msgPack[i] = Read( true);
}
else if (type >= Types.FixStr && type <= Types.FixStrMax) msgPack.Object = RS(type);
else if (type >= Types.PosInt && type <= Types.PosIntMax) msgPack.Object = unk;
else if (type >= Types.NegInt && type <= Types.NegIntMax) msgPack.Object = (sbyte)unk;
else
while (true)
{
if (RN (ref msgPack, ref type)) break;
if (RBy(ref msgPack, ref type)) break;
if (RM (ref msgPack, ref type)) break;
if (RE (ref msgPack, ref type)) break;
if (RS (ref msgPack, ref type)) break;
if (RBo(ref msgPack, ref type)) break;
if (RA (ref msgPack, ref type)) break;
if (RI (ref msgPack, ref type)) break;
if (RU (ref msgPack, ref type)) break;
if (RF (ref msgPack, ref type)) break;
break;
}
return msgPack;
}
private bool RI(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Int8 ) msgPack.Object = _IO.RI8();
else if (type == Types.Int16) msgPack.Object = _IO.RI16E(true);
else if (type == Types.Int32) msgPack.Object = _IO.RI32E(true);
else if (type == Types.Int64) msgPack.Object = _IO.RI64E(true);
else return false;
return true;
}
private bool RU(ref MsgPack msgPack, ref Types type)
{
if (type == Types.UInt8 ) msgPack.Object = _IO.RU8();
else if (type == Types.UInt16) msgPack.Object = _IO.RU16E(true);
else if (type == Types.UInt32) msgPack.Object = _IO.RU32E(true);
else if (type == Types.UInt64) msgPack.Object = _IO.RU64E(true);
else return false;
return true;
}
private bool RF(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Float32) msgPack.Object = _IO.RF32E(true);
else if (type == Types.Float64) msgPack.Object = _IO.RF64E(true);
else return false;
return true;
}
private bool RBo(ref MsgPack msgPack, ref Types type)
{
if (type == Types.False) msgPack.Object = false;
else if (type == Types.True ) msgPack.Object = true ;
else return false;
return true;
}
private bool RBy(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Bin8 ) Length = _IO.RU8();
else if (type == Types.Bin16) Length = _IO.RI16E(true);
else if (type == Types.Bin32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = _IO.RBy(Length);
return true;
}
private bool RS(ref MsgPack msgPack, ref Types type)
{
string val = RS(type);
if (val != null) msgPack.Object = val;
else return false;
return true;
}
private string RS(Types val)
{
if (val >= Types.FixStr && val <= Types.FixStrMax)
return _IO.RS(val - Types.FixStr);
else if (val >= Types. Str8 && val <= Types. Str32 )
{
System.Enum.TryParse(val.ToString(), out Types type);
int Length = 0;
if (type == Types.Str8 ) Length = _IO.RU8();
else if (type == Types.Str16) Length = _IO.RI16E(true);
else Length = _IO.RI32E(true);
return _IO.RS(Length);
}
return null;
}
private bool RN(ref MsgPack msgPack, ref Types type)
{
if (type == Types.Nil) msgPack.Object = null;
else return false;
return true;
}
private bool RA(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Arr16) Length = _IO.RI16E(true);
else if (type == Types.Arr32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = new MsgPack[Length];
for (int i = 0; i < Length; i++) msgPack[i] = Read(true);
return true;
}
private bool RM(ref MsgPack msgPack, ref Types type)
{
int Length = 0;
if (type == Types.Map16) Length = _IO.RI16E(true);
else if (type == Types.Map32) Length = _IO.RI32E(true);
else return false;
msgPack.Object = KKdList<MsgPack>.New;
for (int i = 0; i < Length; i++) msgPack.Add(Read());
return true;
}
private bool RE(ref MsgPack MsgPack, ref Types type)
{
int Length = 0;
if (type == Types.FixExt1 ) Length = 1 ;
else if (type == Types.FixExt2 ) Length = 2 ;
else if (type == Types.FixExt4 ) Length = 4 ;
else if (type == Types.FixExt8 ) Length = 8 ;
else if (type == Types.FixExt16) Length = 16;
else if (type == Types. Ext8 ) Length = _IO.RU8();
else if (type == Types. Ext16) Length = _IO.RI16E(true);
else if (type == Types. Ext32) Length = _IO.RI32E(true);
else return false;
MsgPack.Object = new MsgPack.Ext { Type = _IO.RI8(), Data = _IO.RBy(Length) };
return true;
}
public MP W(MsgPack msgPack, bool ignoreNull, bool IsArray = false)
{
if (msgPack.Name != null && !IsArray) W(msgPack.Name);
Write(msgPack.Object, ignoreNull);
return this;
}
private void Write(object obj, bool ignoreNull)
{
if (obj == null) { if (!ignoreNull) WN(); return; }
switch (obj)
{
case KKdList<MsgPack> val: WM(val.Count );
for (int i = 0; i < val.Count ; i++) W(val[i], ignoreNull); break;
case MsgPack[] val: WA(val.Length);
for (int i = 0; i < val.Length; i++) W(val[i], ignoreNull); break;
case MsgPack val: W(val, ignoreNull); break;
case byte[] val: W(val); break;
case bool val: W(val); break;
case sbyte val: W(val); break;
case byte val: W(val); break;
case short val: W(val); break;
case ushort val: W(val); break;
case int val: W(val); break;
case uint val: W(val); break;
case long val: W(val); break;
case ulong val: W(val); break;
case float val: W(val); break;
case double val: W(val); break;
case string val: W(val); break;
case MsgPack.Ext val: W(val); break;
}
}
private void W( sbyte val) { if (val < -0x20) _IO.W((byte)0xD0); _IO.W(val); }
private void W( byte val) { if (val >= 0x80) _IO.W((byte)0xCC); _IO.W(val); }
private void W( short val) { if (( sbyte)val == val) W(( sbyte)val);
else if (( byte)val == val) W(( byte)val);
else { _IO.W((byte)0xD1); _IO.WE(val, true); } }
private void W(ushort val) { if (( byte)val == val) W(( byte)val);
else { _IO.W((byte)0xCD); _IO.WE(val, true); } }
private void W( int val) { if (( short)val == val) W(( short)val);
else if ((ushort)val == val) W((ushort)val);
else { _IO.W((byte)0xD2); _IO.WE(val, true); } }
private void W( uint val) { if ((ushort)val == val) W((ushort)val);
else { _IO.W((byte)0xCE); _IO.WE(val, true); } }
private void W( long val) { if (( int)val == val) W(( int)val);
else if (( uint)val == val) W(( uint)val);
else { _IO.W((byte)0xD3); _IO.WE(val, true); } }
private void W( ulong val) { if (( uint)val == val) W(( uint)val);
else { _IO.W((byte)0xCF); _IO.WE(val, true); } }
private void W( float val) { if (( long)val == val) W(( long)val);
else { _IO.W((byte)0xCA); _IO.WE(val, true); } }
private void W(double val) { if (( long)val == val) W(( long)val);
else if (( float)val == val) W(( float)val);
else { _IO.W((byte)0xCB); _IO.WE(val, true); } }
private void W( bool val) =>
_IO.W((byte)(val ? 0xC3 : 0xC2));
private void W(byte[] val)
{
if (val == null) { WN(); return; }
if (val.Length < 0x100) { _IO.W((byte)0xC4); _IO.W (( byte)val.Length ); }
else if (val.Length < 0x10000) { _IO.W((byte)0xC5); _IO.WE((ushort)val.Length, true); }
else { _IO.W((byte)0xC6); _IO.WE( val.Length, true); }
_IO.W(val);
}
private void W(string val)
{
if (val == null) { WN(); return; }
byte[] array = Text.ToUTF8(val);
if (array.Length < 0x20) _IO.W((byte)(0xA0 | (array.Length & 0x1F)));
else if (array.Length < 0x100) { _IO.W((byte)0xD9); _IO.W (( byte)array.Length); }
else if (array.Length < 0x10000) { _IO.W((byte)0xDA); _IO.WE((ushort)array.Length, true); }
else { _IO.W((byte)0xDB); _IO.WE( array.Length, true); }
_IO.W(array);
}
private void WN() => _IO.W((byte)0xC0);
private void WA(int val)
{
if (val == 0) { WN(); return; }
else if (val < 0x10) _IO.W((byte)(0x90 | (val & 0x0F)));
else if (val < 0x10000) { _IO.W((byte)0xDC); _IO.WE((ushort)val, true); }
else { _IO.W((byte)0xDD); _IO.WE( val, true); }
}
private void WM(int val)
{
if (val == 0) { WN(); return; }
else if (val < 0x10) _IO.W((byte)(0x80 | (val & 0x0F)));
else if (val < 0x10000) { _IO.W((byte)0xDE); _IO.WE((ushort)val, true); }
else { _IO.W((byte)0xDF); _IO.WE( val, true); }
}
private void W(MsgPack.Ext val) => WE(val);
private void WE(MsgPack.Ext val)
{
if (val.Data == null) { WN(); return; }
if (val.Data.Length < 1 ) { WN(); return; }
else if (val.Data.Length == 1 ) _IO.W((byte)0xD4);
else if (val.Data.Length == 2 ) _IO.W((byte)0xD5);
else if (val.Data.Length == 4 ) _IO.W((byte)0xD6);
else if (val.Data.Length == 8 ) _IO.W((byte)0xD7);
else if (val.Data.Length == 16) _IO.W((byte)0xD8);
else
{
if (val.Data.Length < 0x100)
{ _IO.W((byte)0xC7); _IO.W (( byte)val.Data.Length); }
else if (val.Data.Length < 0x10000)
{ _IO.W((byte)0xC8); _IO.WE((ushort)val.Data.Length, true); }
else
{ _IO.W((byte)0xC9); _IO.WE( val.Data.Length, true); }
}
_IO.W(val.Type);
_IO.W(val.Data);
}
public void Dispose() => _IO.C();
}
public enum Types : byte
{
PosInt = 0b00000000,
FixMap = 0b10000000,
FixArr = 0b10010000,
FixStr = 0b10100000,
Nil = 0b11000000,
NeverUsed = 0b11000001,
False = 0b11000010,
True = 0b11000011,
Bin8 = 0b11000100,
Bin16 = 0b11000101,
Bin32 = 0b11000110,
Ext8 = 0b11000111,
Ext16 = 0b11001000,
Ext32 = 0b11001001,
Float32 = 0b11001010,
Float64 = 0b11001011,
UInt8 = 0b11001100,
UInt16 = 0b11001101,
UInt32 = 0b11001110,
UInt64 = 0b11001111,
Int8 = 0b11010000,
Int16 = 0b11010001,
Int32 = 0b11010010,
Int64 = 0b11010011,
FixExt1 = 0b11010100,
FixExt2 = 0b11010101,
FixExt4 = 0b11010110,
FixExt8 = 0b11010111,
FixExt16 = 0b11011000,
Str8 = 0b11011001,
Str16 = 0b11011010,
Str32 = 0b11011011,
Arr16 = 0b11011100,
Arr32 = 0b11011101,
Map16 = 0b11011110,
Map32 = 0b11011111,
NegInt = 0b11100000,
PosIntMax = 0b01111111,
FixMapMax = 0b10001111,
FixArrMax = 0b10011111,
FixStrMax = 0b10111111,
NegIntMax = 0b11111111,
}
}
+6
View File
@@ -62,5 +62,11 @@ namespace KKdMainLib.IO
public static bool IsPathRooted(string path) =>
MSIOP.IsPathRooted(path);
public static string RemoveExtension(string path) =>
path.Substring(0, path.Length - GetExtension(path).Length);
public static string ReplaceExtension(string path, string ext) =>
path.Substring(0, path.Length - GetExtension(path).Length) + ext;
}
}
+55 -81
View File
@@ -1,7 +1,7 @@
using System;
using KKdBaseLib;
using MSIO = System.IO;
using ENRSDict = System.Collections.Generic.Dictionary<long, int>;
using ENRSDict = System.Collections.Generic.Dictionary<long, byte>;
namespace KKdMainLib.IO
{
@@ -95,12 +95,12 @@ namespace KKdMainLib.IO
if (P % align != 0) s.Seek(P + O + Al, 0);
}
public void A(long align, bool SetLength)
public void A(long align, bool setLength)
{
if (SetLength) s.SetLength(P + O);
if (setLength) s.SetLength(P + O);
long Al = align - P % align;
if (P % align != 0) s.Seek(P + O + Al, 0);
if (SetLength) s.SetLength(P + O);
if (setLength) s.SetLength(P + O);
}
public void A(long align, bool setLength0, bool setLength1)
@@ -199,65 +199,65 @@ namespace KKdMainLib.IO
public void WE( float val, bool isBE) { cW(); b.GBy(val); b.E(4, isBE); s.Write(b, 0, 4); }
public void WE(double val, bool isBE) { cW(); b.GBy(val); b.E(8, isBE); s.Write(b, 0, 8); }
private void RENRS(byte[] b, int c)
private void RENRS(byte c)
{ cR(); if (getENRS) ENRSDict.Add(P, c); s.Read(b, 0, c); }
public short RI16ENRS() { RENRS(b, 2); return b.TI16(); }
public ushort RU16ENRS() { RENRS(b, 2); return b.TU16(); }
public int RI32ENRS() { RENRS(b, 4); return b.TI32(); }
public uint RU32ENRS() { RENRS(b, 4); return b.TU32(); }
public long RI64ENRS() { RENRS(b, 8); return b.TI64(); }
public ulong RU64ENRS() { RENRS(b, 8); return b.TU64(); }
public float RF32ENRS() { RENRS(b, 4); return b.TF32(); }
public double RF64ENRS() { RENRS(b, 8); return b.TF64(); }
public short RI16ENRS() { RENRS((byte)2); return b.TI16(); }
public ushort RU16ENRS() { RENRS((byte)2); return b.TU16(); }
public int RI32ENRS() { RENRS((byte)4); return b.TI32(); }
public uint RU32ENRS() { RENRS((byte)4); return b.TU32(); }
public long RI64ENRS() { RENRS((byte)8); return b.TI64(); }
public ulong RU64ENRS() { RENRS((byte)8); return b.TU64(); }
public float RF32ENRS() { RENRS((byte)4); return b.TF32(); }
public double RF64ENRS() { RENRS((byte)8); return b.TF64(); }
public short RI16ENRSE() { RENRS(b, 2); b.E(2, IsBE); return b.TI16(); }
public ushort RU16ENRSE() { RENRS(b, 2); b.E(2, IsBE); return b.TU16(); }
public int RI32ENRSE() { RENRS(b, 4); b.E(4, IsBE); return b.TI32(); }
public uint RU32ENRSE() { RENRS(b, 4); b.E(4, IsBE); return b.TU32(); }
public long RI64ENRSE() { RENRS(b, 8); b.E(8, IsBE); return b.TI64(); }
public ulong RU64ENRSE() { RENRS(b, 8); b.E(8, IsBE); return b.TU64(); }
public float RF32ENRSE() { RENRS(b, 4); b.E(4, IsBE); return b.TF32(); }
public double RF64ENRSE() { RENRS(b, 8); b.E(8, IsBE); return b.TF64(); }
public short RI16ENRSE() { RENRS((byte)2); b.E(2, IsBE); return b.TI16(); }
public ushort RU16ENRSE() { RENRS((byte)2); b.E(2, IsBE); return b.TU16(); }
public int RI32ENRSE() { RENRS((byte)4); b.E(4, IsBE); return b.TI32(); }
public uint RU32ENRSE() { RENRS((byte)4); b.E(4, IsBE); return b.TU32(); }
public long RI64ENRSE() { RENRS((byte)8); b.E(8, IsBE); return b.TI64(); }
public ulong RU64ENRSE() { RENRS((byte)8); b.E(8, IsBE); return b.TU64(); }
public float RF32ENRSE() { RENRS((byte)4); b.E(4, IsBE); return b.TF32(); }
public double RF64ENRSE() { RENRS((byte)8); b.E(8, IsBE); return b.TF64(); }
public short RI16ENRSE(bool isBE) { RENRS(b, 2); b.E(2, isBE); return b.TI16(); }
public ushort RU16ENRSE(bool isBE) { RENRS(b, 2); b.E(2, isBE); return b.TU16(); }
public int RI32ENRSE(bool isBE) { RENRS(b, 4); b.E(4, isBE); return b.TI32(); }
public uint RU32ENRSE(bool isBE) { RENRS(b, 4); b.E(4, isBE); return b.TU32(); }
public long RI64ENRSE(bool isBE) { RENRS(b, 8); b.E(8, isBE); return b.TI64(); }
public ulong RU64ENRSE(bool isBE) { RENRS(b, 8); b.E(8, isBE); return b.TU64(); }
public float RF32ENRSE(bool isBE) { RENRS(b, 4); b.E(4, isBE); return b.TF32(); }
public double RF64ENRSE(bool isBE) { RENRS(b, 8); b.E(8, isBE); return b.TF64(); }
public short RI16ENRSE(bool isBE) { RENRS((byte)2); b.E(2, isBE); return b.TI16(); }
public ushort RU16ENRSE(bool isBE) { RENRS((byte)2); b.E(2, isBE); return b.TU16(); }
public int RI32ENRSE(bool isBE) { RENRS((byte)4); b.E(4, isBE); return b.TI32(); }
public uint RU32ENRSE(bool isBE) { RENRS((byte)4); b.E(4, isBE); return b.TU32(); }
public long RI64ENRSE(bool isBE) { RENRS((byte)8); b.E(8, isBE); return b.TI64(); }
public ulong RU64ENRSE(bool isBE) { RENRS((byte)8); b.E(8, isBE); return b.TU64(); }
public float RF32ENRSE(bool isBE) { RENRS((byte)4); b.E(4, isBE); return b.TF32(); }
public double RF64ENRSE(bool isBE) { RENRS((byte)8); b.E(8, isBE); return b.TF64(); }
private void WENRS(byte[] b, int c)
{ if (getENRS) ENRSDict.Add(P, c); cR(); s.Write(b, 0, c); }
private void WENRS(byte c)
{ if (getENRS) ENRSDict.Add(P, c); cW(); s.Write(b, 0, c); }
public void WENRS( short val) { b.GBy(val); WENRS(b, 2); }
public void WENRS(ushort val) { b.GBy(val); WENRS(b, 2); }
public void WENRS( int val) { b.GBy(val); WENRS(b, 4); }
public void WENRS( uint val) { b.GBy(val); WENRS(b, 4); }
public void WENRS( long val) { b.GBy(val); WENRS(b, 8); }
public void WENRS( ulong val) { b.GBy(val); WENRS(b, 8); }
public void WENRS( float val) { b.GBy(val); WENRS(b, 4); }
public void WENRS(double val) { b.GBy(val); WENRS(b, 8); }
public void WENRS( short val) { b.GBy(val); WENRS((byte)2); }
public void WENRS(ushort val) { b.GBy(val); WENRS((byte)2); }
public void WENRS( int val) { b.GBy(val); WENRS((byte)4); }
public void WENRS( uint val) { b.GBy(val); WENRS((byte)4); }
public void WENRS( long val) { b.GBy(val); WENRS((byte)8); }
public void WENRS( ulong val) { b.GBy(val); WENRS((byte)8); }
public void WENRS( float val) { b.GBy(val); WENRS((byte)4); }
public void WENRS(double val) { b.GBy(val); WENRS((byte)8); }
public void WENRSE( short val) { b.GBy(val); b.E(2, IsBE); WENRS(b, 2); }
public void WENRSE(ushort val) { b.GBy(val); b.E(2, IsBE); WENRS(b, 2); }
public void WENRSE( int val) { b.GBy(val); b.E(4, IsBE); WENRS(b, 4); }
public void WENRSE( uint val) { b.GBy(val); b.E(4, IsBE); WENRS(b, 4); }
public void WENRSE( long val) { b.GBy(val); b.E(8, IsBE); WENRS(b, 8); }
public void WENRSE( ulong val) { b.GBy(val); b.E(8, IsBE); WENRS(b, 8); }
public void WENRSE( float val) { b.GBy(val); b.E(4, IsBE); WENRS(b, 4); }
public void WENRSE(double val) { b.GBy(val); b.E(8, IsBE); WENRS(b, 8); }
public void WENRSE( short val) { b.GBy(val); b.E(2, IsBE); WENRS((byte)2); }
public void WENRSE(ushort val) { b.GBy(val); b.E(2, IsBE); WENRS((byte)2); }
public void WENRSE( int val) { b.GBy(val); b.E(4, IsBE); WENRS((byte)4); }
public void WENRSE( uint val) { b.GBy(val); b.E(4, IsBE); WENRS((byte)4); }
public void WENRSE( long val) { b.GBy(val); b.E(8, IsBE); WENRS((byte)8); }
public void WENRSE( ulong val) { b.GBy(val); b.E(8, IsBE); WENRS((byte)8); }
public void WENRSE( float val) { b.GBy(val); b.E(4, IsBE); WENRS((byte)4); }
public void WENRSE(double val) { b.GBy(val); b.E(8, IsBE); WENRS((byte)8); }
public void WENRSE( short val, bool isBE) { b.GBy(val); b.E(2, isBE); WENRS(b, 2); }
public void WENRSE(ushort val, bool isBE) { b.GBy(val); b.E(2, isBE); WENRS(b, 2); }
public void WENRSE( int val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS(b, 4); }
public void WENRSE( uint val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS(b, 4); }
public void WENRSE( long val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS(b, 8); }
public void WENRSE( ulong val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS(b, 8); }
public void WENRSE( float val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS(b, 4); }
public void WENRSE(double val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS(b, 8); }
public void WENRSE( short val, bool isBE) { b.GBy(val); b.E(2, isBE); WENRS((byte)2); }
public void WENRSE(ushort val, bool isBE) { b.GBy(val); b.E(2, isBE); WENRS((byte)2); }
public void WENRSE( int val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS((byte)4); }
public void WENRSE( uint val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS((byte)4); }
public void WENRSE( long val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS((byte)8); }
public void WENRSE( ulong val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS((byte)8); }
public void WENRSE( float val, bool isBE) { b.GBy(val); b.E(4, isBE); WENRS((byte)4); }
public void WENRSE(double val, bool isBE) { b.GBy(val); b.E(8, isBE); WENRS((byte)8); }
public int RI24 ( ) { cR(); s.Read(b, 0, 3); return b.TI24(); }
public uint RU24 ( ) { cR(); s.Read(b, 0, 3); return b.TU24(); }
@@ -301,32 +301,6 @@ namespace KKdMainLib.IO
public void WE(Quat val ) { cW(); b.GBy(val); b.E(16, IsBE); s.Write(b, 0, 16); }
public void WE(Quat val, bool isBE) { cW(); b.GBy(val); b.E(16, isBE); s.Write(b, 0, 16); }
public T RT<T>(long offset = -1) where T : unmanaged
{
cR();
int sizeOfT = sizeof(T);
if (offset > -1) s.Position = offset;
byte[] buf = new byte[sizeOfT];
fixed (byte* ptr = buf)
{
cR(); s.Read(buf, 0, sizeOfT);
return *(T*)ptr;
}
}
public void WT<T>(T val, long offset = -1) where T : unmanaged
{
cR();
int sizeOfT = sizeof(T);
if (offset > -1) s.Position = offset;
byte[] buf = new byte[sizeOfT];
fixed (byte* ptr = buf)
{
*(T*)ptr = val;
s.Write(buf, 0, sizeOfT);
}
}
public T[] RA<T>(long length, long offset = -1) where T : unmanaged
{
cR();
+21 -8
View File
@@ -1,17 +1,17 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Authors>korenkonder</Authors>
<Company></Company>
<Configuration></Configuration>
<Copyright>korenkonder © 2018-2020</Copyright>
<Description>A simple library for working with Project Diva AC/DT/F/AFT/F2/X/FT/M39 files</Description>
<FileVersion>0.4.9.3</FileVersion>
<Copyright>korenkonder (C) 2018-2024</Copyright>
<Description>A simple library for working with Project Diva AC/DT/F/AFT/F2/X/XHD/FT/VRFL/M39 files</Description>
<FileVersion>0.5.0.0</FileVersion>
<PackageId>KKdMainLib</PackageId>
<Product>KKdMainLib</Product>
<TargetFramework>netstandard2.0</TargetFramework>
<TargetFramework>net461</TargetFramework>
<Title>KKdMainLib</Title>
<Version>0.4.9.3</Version>
<Version>0.5.0.0</Version>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -24,7 +24,7 @@
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -37,9 +37,22 @@
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj" />
</ItemGroup>
<ItemGroup>
<Compile Update="Properties\Resources.Designer.cs">
<DesignTime>True</DesignTime>
<AutoGen>True</AutoGen>
<DependentUpon>Resources.resx</DependentUpon>
</Compile>
</ItemGroup>
<ItemGroup>
<EmbeddedResource Update="Properties\Resources.resx">
<Generator>ResXFileCodeGenerator</Generator>
<LastGenOutput>Resources.Designer.cs</LastGenOutput>
</EmbeddedResource>
</ItemGroup>
</Project>
-184
View File
@@ -1,184 +0,0 @@
using System;
using System.Linq;
using System.Globalization;
using System.Collections.Generic;
using KKdBaseLib;
using A3DADict = System.Collections.Generic.Dictionary<string, object>;
namespace KKdMainLib
{
public static unsafe class Main
{
public const string TimeFormatHHmmssfff = "{0:d2}:{1:d2}:{2:d2}.{3:d3}";
public static void WT(this TimeSpan time, bool writeLine = false)
{
if (writeLine) Console.WriteLine(TimeFormatHHmmssfff,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
else Console.Write (TimeFormatHHmmssfff,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
}
public static void WT(this TimeSpan time, string text, bool writeLine = true)
{
if (writeLine) Console.WriteLine(TimeFormatHHmmssfff + " - " + text,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
else Console.Write (TimeFormatHHmmssfff + " - " + text,
time.Hours, time.Minutes, time.Seconds, time.Milliseconds);
}
public static string NT(this string source, ref int i, byte end)
{
string s = "";
while (true)
{
if (source[i] == end) break;
else s += source[i];
i++;
}
return s;
}
public static bool SW(this A3DADict dict, string args, char split = '.') =>
dict.SW(args.Split(split));
public static bool SW(this A3DADict dict, string[] args)
{
if (dict == null || args.Length < 1) return false;
args[0] = args[0].ToLower();
if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++)
newArgs[i] = args[i + 1];
return dict.ContainsKey(args[0]) ? SW((A3DADict)dict[args[0]], newArgs) : false;
}
return dict.ContainsKey(args[0]);
}
public static bool FV(this A3DADict dict, ref bool value, char split, string args) =>
dict.FV(out string val, args.Split(split)) ? bool.TryParse(val, out value) : false;
public static bool FV(this A3DADict dict, ref int value, char split, string args) =>
dict.FV(out string val, args.Split(split)) ? int.TryParse(val, out value) : false;
public static bool FV(this A3DADict dict, ref float value, char split, string args) =>
dict.FV(out string val, args.Split(split)) ? val.ToF32(out value) : false;
public static bool FV(this A3DADict dict, ref double value, char split, string args) =>
dict.FV(out string val, args.Split(split)) ? val.ToF64(out value) : false;
public static bool FV(this A3DADict dict, ref string value, char split, string args)
{ if (dict.FV(out string val , args.Split(split)))
{ value = val; return true; } return false; }
public static bool FV(this A3DADict dict, out bool value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return bool.TryParse(val, out value); value = false; return false; }
public static bool FV(this A3DADict dict, out int value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return int.TryParse(val, out value); value = 0; return false; }
public static bool FV(this A3DADict dict, out float value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF32(out value); value = 0; return false; }
public static bool FV(this A3DADict dict, out double value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF64(out value); value = 0; return false; }
public static bool FV(this A3DADict dict, out int? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
{ bool Val = int.TryParse(val, out int _value);
value = _value; return Val; } value = null; return false; }
public static bool FV(this A3DADict dict, out float? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF32(out value); value = null; return false; }
public static bool FV(this A3DADict dict, out double? value, string args)
{ if (dict.FV(out string val , args.Split('.' )))
return val.ToF64(out value); value = null; return false; }
public static bool FV(this A3DADict dict, out string value, string args) =>
dict.FV(out value, args.Split('.' ));
public static bool FV(this A3DADict dict, out string value, string[] args)
{
value = null;
if (dict == null || args.Length < 1) return false;
args[0] = args[0].ToLower();
if (!dict.ContainsKey(args[0])) return false;
else if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
return ((A3DADict)dict[args[0]]).FV(out value, newArgs);
}
else if (args.Length == 1)
{
if (dict[args[0]].GetType() == dict.GetType())
return ((A3DADict)dict[args[0]]).FV(out value, args);
else if (dict[args[0]].GetType() != typeof(string)) return false;
}
value = (string)dict[args[0]];
return true;
}
public static void GD(this A3DADict dict, string args, char split = '.')
{
string[] dataArray = args.Split('=');
if (dataArray.Length == 2)
dict.GD(dataArray[0].Split(split), dataArray[1]);
dataArray = null;
}
public static void GD(this A3DADict dict, string args, string value, char split = '.') =>
dict.GD(args.Split(split), value);
public static void GD(this A3DADict dict, string[] args, string value)
{
if (dict == null) dict = new A3DADict();
else if (args.Length < 1) return;
args[0] = args[0].ToLower();
if (args.Length > 1)
{
string[] newArgs = new string[args.Length - 1];
for (int i = 0; i < args.Length - 1; i++) newArgs[i] = args[i + 1];
if (!dict.ContainsKey(args[0])) dict.Add(args[0], null);
if (dict[args[0]] != null)
{
if (dict[args[0]].GetType() == typeof(string))
dict[args[0]] = new A3DADict { { "", dict[args[0]] } };
}
else dict[args[0]] = new A3DADict();
A3DADict bufDict = (A3DADict)dict[args[0]];
bufDict.GD(newArgs, value);
dict[args[0]] = bufDict;
}
else if (!dict.ContainsKey(args[0])) dict.Add(args[0], value);
}
public static TKey GK<TKey, TVal>(this Dictionary<TKey, TVal> dict, TVal val) =>
dict.First((System.Collections.Generic.KeyValuePair<TKey, TVal> x) => x.Value.Equals(val)).Key;
public static string TTC(this string s) =>
CultureInfo.CurrentCulture.TextInfo.ToTitleCase(s);
public static int[] SW(this int length)
{
int i = 0;
List<string> A = new List<string>();
for (i = 0; i < length; i++) A.Add(i.ToString());
A.Sort();
int[] B = new int[length];
for (i = 0; i < length; i++) B[i] = int.Parse(A[i]);
return B;
}
}
}
+134 -110
View File
@@ -9,28 +9,30 @@ namespace KKdMainLib
{
private int i, i0, i1;
public MotHeader[] MOT;
private Stream _IO;
private Stream s;
[System.ThreadStatic] public bool Modern;
public void MOTReader(string file)
{
_IO = File.OpenReader(file + ".bin");
s = File.OpenReader(file + ".bin");
i = 0;
while (true)
if (_IO.RI64() == 0) break;
else { _IO.RI64(); i++; }
if (s.RI64() == 0) break;
else { s.RI64(); i++; }
if (i == 0) return;
_IO.P = 0;
s.P = 0;
int motCount = i;
MOT = new MotHeader[motCount];
for (i = 0; i < motCount; i++)
{
ref MotHeader mot = ref MOT[i];
mot.KeySet .O = _IO.RI32();
mot.KeySetTypesOffset = _IO.RI32();
mot. KeySetOffset = _IO.RI32();
mot.BoneInfo .O = _IO.RI32();
mot.KeySet .O = s.RI32();
mot.KeySetTypesOffset = s.RI32();
mot. KeySetOffset = s.RI32();
mot.BoneInfo .O = s.RI32();
}
for (i = 0; i < motCount; i++)
@@ -38,128 +40,158 @@ namespace KKdMainLib
ref MotHeader mot = ref MOT[i];
i0 = 1;
_IO.P = mot.BoneInfo.O;
_IO.RU16();
while (_IO.RU16() != 0) i0++;
s.P = mot.BoneInfo.O;
s.RU16();
while (s.P < s.L && s.RU16() != 0) i0++;
mot.BoneInfo.V = new BoneInfo[i0];
_IO.P = mot.BoneInfo.O;
mot.BoneInfo.V = new int[i0];
s.P = mot.BoneInfo.O;
for (i0 = 0; i0 < mot.BoneInfo.V.Length; i0++)
mot.BoneInfo.V[i0].Id = _IO.RU16();
mot.BoneInfo.V[i0] = s.RU16();
_IO.P = mot.KeySet.O;
int info = _IO.RU16();
s.P = mot.KeySet.O;
int info = s.RU16();
mot.HighBits = info >> 14;
mot.FrameCount = _IO.RU16();
mot.FrameCount = s.RU16();
mot.KeySet.V = new KeySet[info & 0x3FFF];
_IO.P = mot.KeySetTypesOffset;
s.P = mot.KeySetTypesOffset;
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
if (i0 % 8 == 0) i1 = _IO.RU16();
if (i0 % 8 == 0) i1 = s.RU16();
mot.KeySet.V[i0] = new KeySet { Type = (KeySetType)((i1 >> (i0 % 8 * 2)) & 0b11) };
}
_IO.P = mot.KeySetOffset;
s.P = mot.KeySetOffset;
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
ref KeySet key = ref mot.KeySet.V[i0];
if (key.Type == KeySetType.Static)
{ key.Keys = new KFT2[1];
key.Keys[0].V = _IO.RF32(); }
else if (key.Type == KeySetType.Linear)
key.Keys[0].V = s.RF32(); }
else if (key.Type == KeySetType.Linear && !Modern)
{
key.Keys = new KFT2[_IO.RU16()];
key.Keys = new KFT2[s.RU16()];
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].F = _IO.RU16();
_IO.A(0x4);
key.Keys[i1].F = s.RU16();
s.A(0x4);
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].V = _IO.RF32();
key.Keys[i1].V = s.RF32();
}
else if (key.Type == KeySetType.Interpolated)
else if (key.Type == KeySetType.Tangent && !Modern)
{
key.Keys = new KFT2[_IO.RU16()];
key.Keys = new KFT2[s.RU16()];
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].F = _IO.RU16();
_IO.A(0x4);
key.Keys[i1].F = s.RU16();
s.A(0x4);
for (i1 = 0; i1 < key.Keys.Length; i1++)
{ key.Keys[i1].V = _IO.RF32(); key.Keys[i1].T = _IO.RF32(); }
{ key.Keys[i1].V = s.RF32(); key.Keys[i1].T = s.RF32(); }
}
else if (key.Type != KeySetType.None)
{
key.Keys = new KFT2[s.RU16()];
ushort type = s.RU16();
if (key.Type == KeySetType.Tangent)
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].T = s.RF32();
if (type == 1)
{
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].V = s.RF16();
s.A(0x4);
}
else
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].V = s.RF32();
for (i1 = 0; i1 < key.Keys.Length; i1++)
key.Keys[i1].F = s.RU16();
s.A(0x4);
}
}
}
_IO.C();
s.C();
}
public void MOTWriter(string file)
{
if (MOT == null) return;
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
int MOTCount = MOT.Length;
_IO.P = (MOTCount + 1) << 4;
s.P = (MOTCount + 1) << 4;
for (i = 0; i < MOTCount; i++)
{
ref MotHeader mot = ref MOT[i];
mot.KeySet.O = _IO.P;
_IO.W((ushort)((mot.HighBits << 14) | (mot.KeySet.V.Length & 0x3FFF)));
_IO.W((ushort)mot.FrameCount);
mot.KeySet.O = s.P;
s.W((ushort)((mot.HighBits << 14) | (mot.KeySet.V.Length & 0x3FFF)));
s.W((ushort)mot.FrameCount);
mot.KeySetTypesOffset = _IO.P;
mot.KeySetTypesOffset = s.P;
for (i0 = 0, i1 = 0; i0 < mot.KeySet.V.Length; i0++)
{
i1 |= ((byte)mot.KeySet.V[i0].Type << (i0 % 8 * 2)) & (0b11 << (i0 % 8 * 2));
if (i0 % 8 == 7) { _IO.W((ushort)i1); i1 = 0; }
if (i0 % 8 == 7) { s.W((ushort)i1); i1 = 0; }
}
_IO.W((ushort)i1);
if (_IO.P % 4 != 0) _IO.W((ushort)0x00);
s.W((ushort)i1);
if (s.P % 4 != 0) s.W((ushort)0x00);
mot.KeySetOffset = _IO.P;
mot.KeySetOffset = s.P;
for (i0 = 0; i0 < mot.KeySet.V.Length; i0++)
{
ref KeySet key = ref mot.KeySet.V[i0];
if (key.Type == KeySetType.Static)
_IO.W(key.Keys[0].V);
else if (key.Type == KeySetType.Linear)
s.W(key.Keys[0].V);
else if ((key.Type == KeySetType.Linear
|| key.Type == KeySetType.Tangent) && !Modern)
{
_IO.W((ushort)key.Keys.Length);
s.W((ushort)key.Keys.Length);
for (i1 = 0; i1 < key.Keys.Length; i1++)
_IO.W((ushort)key.Keys[i1].F);
if (_IO.P % 4 != 0) _IO.W((ushort)0x00);
for (i1 = 0; i1 < key.Keys.Length; i1++)
_IO.W(key.Keys[i1].V);
s.W((ushort)key.Keys[i1].F);
if (s.P % 4 != 0) s.W((ushort)0x00);
if (key.Type == KeySetType.Tangent)
for (i1 = 0; i1 < key.Keys.Length; i1++)
{ s.W(key.Keys[i1].V); s.W(key.Keys[i1].T); }
else
for (i1 = 0; i1 < key.Keys.Length; i1++)
s.W(key.Keys[i1].V);
}
else if (key.Type == KeySetType.Interpolated)
else if (key.Type != KeySetType.None)
{
_IO.W((ushort)key.Keys.Length);
s.W((ushort)key.Keys.Length);
s.W((ushort)0);
if (key.Type == KeySetType.Tangent)
for (i1 = 0; i1 < key.Keys.Length; i1++)
s.W(key.Keys[i1].T);
for (i1 = 0; i1 < key.Keys.Length; i1++)
_IO.W((ushort)key.Keys[i1].F);
if (_IO.P % 4 != 0) _IO.W((ushort)0x00);
s.W(key.Keys[i1].V);
for (i1 = 0; i1 < key.Keys.Length; i1++)
{ _IO.W(key.Keys[i1].V); _IO.W(key.Keys[i1].T); }
s.W((ushort)key.Keys[i1].F);
s.A(0x4);
}
}
if (_IO.P % 4 != 0) _IO.W((ushort)0x00);
if (s.P % 4 != 0) s.W((ushort)0x00);
mot.BoneInfo.O = _IO.P;
mot.BoneInfo.O = s.P;
for (i0 = 0; i0 < mot.BoneInfo.V.Length; i0++)
_IO.W((ushort)mot.BoneInfo.V[i0].Id);
_IO.W((ushort)0);
s.W((ushort)mot.BoneInfo.V[i0]);
s.W((ushort)0);
}
if (_IO.P % 4 != 0) _IO.W((ushort)0x00);
_IO.A(0x4, true);
if (s.P % 4 != 0) s.W((ushort)0x00);
s.A(0x4, true);
_IO.P = 0;
s.P = 0;
for (i = 0; i < MOTCount; i++)
{
ref MotHeader mot = ref MOT[i];
_IO.W(mot.KeySet .O );
_IO.W(mot.KeySetTypesOffset);
_IO.W(mot. KeySetOffset);
_IO.W(mot.BoneInfo .O );
s.W(mot.KeySet .O );
s.W(mot.KeySetTypesOffset);
s.W(mot. KeySetOffset);
s.W(mot.BoneInfo .O );
}
_IO.C();
s.C();
}
public void MsgPackReader(string file, bool json)
@@ -184,7 +216,7 @@ namespace KKdMainLib
MsgPack mot = new MsgPack(motCount, "MOT");
for (i = 0; i < motCount; i++)
mot[i] = MsgPackWriter(ref MOT[i]);
mot.Write(true, file, json);
mot.Write(false, true, file, json);
}
public void MsgPackReader(MsgPack msgPack, ref MotHeader mot)
@@ -210,14 +242,9 @@ namespace KKdMainLib
else if (keySet.Type == KeySetType.Static)
{
keySet.Keys = new KFT2[1];
if (temp1.Array == null) continue;
else if (temp1.Array.Length == 0) continue;
else if (temp1.Array[0].Array == null) continue;
else if (temp1.Array[0].Array.Length == 0) continue;
else if (temp1.Array[0].Array.Length == 1)
keySet.Keys[0] = new KFT2(temp1.Array[0][0].RF32());
else if (temp1.Array[0].Array.Length > 1)
keySet.Keys[0] = new KFT2(temp1.Array[0][0].RF32(), temp1.Array[0][1].RF32());
if (temp1.Array == null) continue;
else if (temp1.Array.Length == 0) continue;
else keySet.Keys[0] = new KFT2(0.0f, temp1.Array[0].RF32());
}
else if (keySet.Type == KeySetType.Linear)
{
@@ -233,7 +260,7 @@ namespace KKdMainLib
keySet.Keys[i1] = new KFT2(array[0].RF32(), array[1].RF32());
}
}
else if (keySet.Type == KeySetType.Interpolated)
else if (keySet.Type == KeySetType.Tangent)
{
keySet.Keys = new KFT2[temp1.Array.Length];
for (i1 = 0; i1 < temp1.Array.Length; i1++)
@@ -254,9 +281,9 @@ namespace KKdMainLib
if ((temp = msgPack["BoneInfo", true]).NotNull)
{
mot.BoneInfo.V = new BoneInfo[temp.Array.Length];
mot.BoneInfo.V = new int[temp.Array.Length];
for (i = 0; i < mot.BoneInfo.V.Length; i++)
mot.BoneInfo.V[i].Id = temp[i].RI32();
mot.BoneInfo.V[i] = temp[i].RI32();
}
temp.Dispose();
}
@@ -273,41 +300,43 @@ namespace KKdMainLib
keySets[i0] = new MsgPack(2);
keySets[i0].Array[0] = (byte)keySet.Type;
keySets[i0].Array[1] = new MsgPack(keySet.Keys.Length);
if (keySet.Type == KeySetType.Static)
{
IKF kf = keySet.Keys[0].Check();
if (kf is KFT0 KFT0) keySets[i0].Array[1][0] =
new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) keySets[i0].Array[1][0] =
new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
MsgPack k = default;
if (kf is KFT0 KFT0) k = new MsgPack(null, new MsgPack[] { 0.0f });
else if (kf is KFT1 KFT1) k = new MsgPack(null, new MsgPack[] { KFT1.V });
keySets[i0].Array[1] = k;
}
else if (keySet.Type == KeySetType.Linear)
{
MsgPack k = new MsgPack(keySet.Keys.Length);
for (i1 = 0; i1 < keySet.Keys.Length; i1++)
{
IKF kf = keySet.Keys[i1].Check();
if (kf is KFT0 KFT0) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
if (kf is KFT0 KFT0) k[i1] = new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) k[i1] = new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
}
keySets[i0].Array[1] = k;
}
else
{
MsgPack k = new MsgPack(keySet.Keys.Length);
for (i1 = 0; i1 < keySet.Keys.Length; i1++)
{
IKF kf = keySet.Keys[i1].Check();
if (kf is KFT0 KFT0) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
else if (kf is KFT2 KFT2) keySets[i0].Array[1][i1] =
new MsgPack(null, new MsgPack[] { KFT2.F, KFT2.V, KFT2.T });
if (kf is KFT0 KFT0) k[i1] = new MsgPack(null, new MsgPack[] { KFT0.F });
else if (kf is KFT1 KFT1) k[i1] = new MsgPack(null, new MsgPack[] { KFT1.F, KFT1.V });
else if (kf is KFT2 KFT2) k[i1] = new MsgPack(null, new MsgPack[] { KFT2.F, KFT2.V, KFT2.T });
}
keySets[i0].Array[1] = k;
}
}
mot.Add(keySets);
MsgPack boneInfo = new MsgPack(Mot.BoneInfo.V.Length, "BoneInfo");
for (i0 = 0; i0 < Mot.BoneInfo.V.Length; i0++)
boneInfo[i0] = Mot.BoneInfo.V[i0].Id;
boneInfo[i0] = Mot.BoneInfo.V[i0];
mot.Add(boneInfo);
return mot;
@@ -315,7 +344,7 @@ namespace KKdMainLib
public void Dispose()
{
_IO = null;
s = null;
MOT = null;
}
@@ -323,8 +352,8 @@ namespace KKdMainLib
{
public int KeySetOffset;
public int KeySetTypesOffset;
public Pointer< KeySet []> KeySet ;
public Pointer<BoneInfo[]> BoneInfo;
public Pointer<KeySet[]> KeySet ;
public Pointer< int[]> BoneInfo;
public int HighBits;
public int FrameCount;
@@ -335,22 +364,17 @@ namespace KKdMainLib
public KFT2[] Keys;
public KeySetType Type;
public override string ToString() => $"Type: {Type}" + (Type == KeySetType.Static ?
$"; Value: {Keys[0].V}" : Type > KeySetType.Static ? $"; Keys: {Keys.Length}" : "");
public override string ToString() =>
$"Type: {Type}" + (Type == KeySetType.Static ? $"; Value: {Keys[0].V}"
: Type > KeySetType.Static ? $"; Keys: {Keys.Length}; First Key: {Keys[0]}" : "");
}
public enum KeySetType : byte
{
None = 0b00,
Static = 0b01,
Linear = 0b10,
Interpolated = 0b11,
}
public struct BoneInfo
{
public string Name;
public int Id;
None = 0b00,
Static = 0b01,
Linear = 0b10,
Tangent = 0b11,
}
}
}
+861 -505
View File
File diff suppressed because it is too large Load Diff
+1 -1
View File
@@ -1,4 +1,4 @@
using System.Reflection;
using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTrademark("")]
+9 -9
View File
@@ -1,4 +1,4 @@
//------------------------------------------------------------------------------
//------------------------------------------------------------------------------
// <auto-generated>
// This code was generated by a tool.
// Runtime Version:4.0.30319.42000
@@ -10,8 +10,8 @@
namespace KKdMainLib.Properties {
using System;
/// <summary>
/// A strongly-typed resource class, for looking up localized strings, etc.
/// </summary>
@@ -23,15 +23,15 @@ namespace KKdMainLib.Properties {
[global::System.Diagnostics.DebuggerNonUserCodeAttribute()]
[global::System.Runtime.CompilerServices.CompilerGeneratedAttribute()]
internal class Resources {
private static global::System.Resources.ResourceManager resourceMan;
private static global::System.Globalization.CultureInfo resourceCulture;
[global::System.Diagnostics.CodeAnalysis.SuppressMessageAttribute("Microsoft.Performance", "CA1811:AvoidUncalledPrivateCode")]
internal Resources() {
}
/// <summary>
/// Returns the cached ResourceManager instance used by this class.
/// </summary>
@@ -45,7 +45,7 @@ namespace KKdMainLib.Properties {
return resourceMan;
}
}
/// <summary>
/// Overrides the current thread's CurrentUICulture property for all
/// resource lookups using this strongly typed resource class.
@@ -59,7 +59,7 @@ namespace KKdMainLib.Properties {
resourceCulture = value;
}
}
/// <summary>
/// Looks up a localized resource of type System.Byte[].
/// </summary>
+81 -71
View File
@@ -8,57 +8,57 @@ namespace KKdMainLib
{
private POF pof;
private Header header;
private Stream _IO;
private Stream s;
public String[] Strings;
public int STRReader(string filepath, string ext)
{
_IO = File.OpenReader(filepath + ext);
s = File.OpenReader(filepath + ext);
header = new Header();
_IO.Format = Format.F;
header.Signature = _IO.RI32();
if (header.Signature == 0x41525453)
s.Format = Format.F;
uint signature = s.RU32();
if (signature == 0x41525453)
{
header = _IO.ReadHeader(true, false);
header = s.ReadHeader(true);
s.IsBE = header.UseBigEndian;
s.Format = header.Format;
int count = _IO.RI32E();
int offset = _IO.RI32E();
int count = s.RI32E();
int offset = s.RI32E();
_IO.P = offset;
s.P = offset;
Strings = new String[count];
for (int i = 0; i < count; i++)
{
Strings[i].Str.O = _IO.RI32E();
Strings[i].ID = _IO.RI32E();
Strings[i].Str.O = s.RI32E();
Strings[i].ID = s.RI32E();
}
_IO.O = 0;
s.O = 0;
for (int i = 0; i < count; i++)
Strings[i].Str.V = Strings[i].Str.O > 0 ?
_IO.RSaO(Strings[i].Str.O) : null;
s.RSaO(Strings[i].Str.O) : null;
}
else
{
_IO.P -= 4;
if ((signature >> 24) > 0) { header.Format = Format.DT; s.IsBE = true; }
else header.Format = Format.F;
int count = 0;
for (int a = 0, i = 0; _IO.P > 0 && _IO.P < _IO.L; i++, count++)
{
a = _IO.RI32();
if (a == 0) break;
}
for (uint i = signature; i != 0 && s.P >= 0 && s.P < s.L; count++)
i = s.RU32();
Strings = new String[count];
s.P = 0;
for (int i = 0; i < count; i++)
{
_IO.PI64 = Strings[i].Str.O;
Strings[i].ID = i;
Strings[i].Str.V = _IO.NTUTF8();
Strings[i].Str.V = s.RSaO();
}
}
_IO.C();
s.C();
return 1;
}
@@ -67,89 +67,97 @@ namespace KKdMainLib
if (Strings == null || Strings.Length == 0 || header.Format > Format.F2) return;
uint offset = 0;
uint currentOffset = 0;
_IO = File.OpenWriter(filepath + (header.Format > Format.AFT &&
Format format = header.Format;
s = File.OpenWriter(filepath + (header.Format > Format.AFT &&
header.Format < Format.FT ? ".str" : ".bin"), true);
_IO.Format = header.Format;
s.Format = header.Format;
s.IsBE = header.UseBigEndian;
pof.Offsets = KKdList<long>.New;
long count = Strings.LongLength;
if (_IO.Format > Format.AFT && _IO.Format < Format.FT)
if (s.Format > Format.AFT && s.Format < Format.FT)
{
_IO.P = 0x40;
_IO.WX(count, ref pof);
_IO.WX(0x80);
_IO.P = 0x80;
for (int i = 0; i < count; i++) _IO.W(0x00L);
_IO.A(0x10);
s.P = 0x40;
s.WX(count, ref pof);
s.WX(0x80);
s.P = 0x80;
for (int i = 0; i < count; i++) s.W(0x00L);
}
else
{
for (int i = 0; i < count; i++) _IO.W(0x00);
_IO.A(0x20);
}
for (int i = 0; i < count; i++) s.W(0x00);
s.A(0x10);
KKdList<string> usedSTR = KKdList<string>.New;
KKdList<int> usedSTRPos = KKdList<int>.New;
int[] STRPos = new int[count];
usedSTRPos.Add(_IO.P);
usedSTR.Add("");
_IO.W(0);
for (int i = 0; i < count; i++)
{
if (!usedSTR.Contains(Strings[i].Str.V))
if (usedSTR.Contains(Strings[i].Str.V))
{
STRPos[i] = _IO.P;
usedSTRPos.Add(STRPos[i]);
usedSTR.Add(Strings[i].Str.V);
_IO.W(Strings[i].Str.V);
_IO.W(0);
for (int i2 = 0; i2 < count; i2++)
if (usedSTR[i2] == Strings[i].Str.V)
{ STRPos[i] = usedSTRPos[i2]; break; }
}
else
for (int i2 = 0; i2 < count; i2++)
if (usedSTR[i2] == Strings[i].Str.V) { STRPos[i] = usedSTRPos[i2]; break; }
{
usedSTRPos.Add(STRPos[i] = s.P);
usedSTR.Add(Strings[i].Str.V);
s.W(Strings[i].Str.V);
s.W((byte)0);
if (format < Format.F) s.A(0x8);
}
}
s.A(0x4);
s.L = s.P;
if (_IO.Format > Format.AFT)
if (s.Format > Format.AFT)
{
_IO.A(0x10);
offset = _IO.PU32;
_IO.P = 0x80;
s.A(0x10);
offset = s.PU32;
s.P = 0x80;
for (int i = 0; i < count; i++)
{
pof.Offsets.Add(_IO.P);
_IO.WE(STRPos[i]);
_IO.WE(Strings[i].ID);
pof.Offsets.Add(s.P);
s.WE(STRPos[i]);
s.WE(Strings[i].ID);
}
_IO.PU32 = offset;
_IO.W(pof, false, 1);
currentOffset = _IO.PU32;
_IO.WEOFC();
header.DataSize = (int)(currentOffset - 0x40);
s.PU32 = offset;
s.W(pof, false, 1);
s.WEOFC(1);
currentOffset = s.PU32;
s.WEOFC();
header.DataSize = currentOffset - 0x40;
header.Signature = 0x41525453;
header.SectionSize = (int)(offset - 0x40);
_IO.P = 0;
_IO.W(header, true);
header.SectionSize = offset - 0x40;
header.UseSectionSize = true;
s.P = 0;
s.W(header, true);
}
else
{
_IO.P = 0;
for (int i = 0; i < count; i++) _IO.W(STRPos[i]);
s.P = 0;
s.IsBE = header.Format < Format.F;
for (int i = 0; i < count; i++) s.WE(STRPos[i]);
}
_IO.C();
s.C();
}
public void MsgPackReader(string file, bool json)
{
header = default;
Strings = default;
MsgPack temp;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
if ((temp = msgPack["STR"]).NotNull) return;
if ((temp = msgPack["STR"]).IsNull) return;
header = new Header();
System.Enum.TryParse(temp.RS("Format"), out header.Format);
if (!System.Enum.TryParse(temp.RS("Format"), out header.Format)) return;
bool? isBE = temp.RnB("UseBigEndian");
if (isBE.HasValue) header.UseBigEndian = isBE.Value;
if ((temp = msgPack["Strings", true]).IsNull) return;
if ((temp = temp["Strings", true]).IsNull) return;
Strings = new String[temp.Array.Length];
for (int i = 0; i < Strings.Length; i++)
@@ -166,22 +174,24 @@ namespace KKdMainLib
{
if (Strings == null || Strings.Length == 0) return;
MsgPack str = new MsgPack("STR").Add("Format", header.Format.ToString());
if (header.UseBigEndian) str.Add("UseBigEndian", header.UseBigEndian);
MsgPack strings = new MsgPack(Strings.Length, "Strings");
for (int i = 0; i < Strings.Length; i++)
{
strings[i] = MsgPack.New.Add("ID", Strings[i].ID);
MsgPack @string = MsgPack.New.Add("ID", Strings[i].ID);
if (Strings[i].Str.V != null)
if (Strings[i].Str.V != "")
strings[i] = strings[i].Add("Str", Strings[i].Str.V);
@string.Add("Str", Strings[i].Str.V);
strings[i] = @string;
}
str.Add(strings);
str.WriteAfterAll(true, file, json);
str.WriteAfterAll(false, true, file, json);
}
private bool disposed;
public void Dispose()
{ if (!disposed) { if (_IO != null) _IO.D(); _IO = null; Strings = default;
{ if (!disposed) { if (s != null) s.D(); s = null; Strings = default;
pof = default; header = default; disposed = true; } }
public struct String
+87 -97
View File
@@ -1,5 +1,6 @@
using KKdBaseLib;
using KKdMainLib.IO;
using KKdBaseLib.Tables;
using TableDict = System.Collections.Generic.Dictionary<string, object>;
namespace KKdMainLib
@@ -7,8 +8,8 @@ namespace KKdMainLib
public struct Tables : System.IDisposable
{
private int i0;
private Stream _IO;
private TableDict dict;
private Stream s;
public ButtonSE[] ButtonSETable;
public ChainSlideSE[] ChainSlideSETable;
@@ -19,21 +20,10 @@ namespace KKdMainLib
public CustomizeItem[] CustomizeItemTable;
public Module[] ModuleTable;
public Plate[] PlateTable;
public PV[] PVList;
public PV[] PVListTable;
private const string c = ".";
public Tables(bool def = true)
{
i0 = 0;
_IO = null;
dict = null;
disposed = false;
ButtonSETable = null; ChainSlideSETable = null; SlideSETable = null; SliderTouchSETable = null;
CollectionCardTable = null; CustomizeItemTable = null;
ModuleTable = null; PlateTable = null; PVList = null;
}
public void BINReader(string file) =>
BINReader(File.ReadAllBytes(file + ".bin"));
@@ -41,7 +31,7 @@ namespace KKdMainLib
{
ButtonSETable = null; ChainSlideSETable = null; SlideSETable = null; SliderTouchSETable = null;
CollectionCardTable = null; CustomizeItemTable = null;
ModuleTable = null; PlateTable = null; PVList = null;
ModuleTable = null; PlateTable = null; PVListTable = null;
dict = new TableDict();
string[] strData = data.ToUTF8().Replace("\r\n", "\n").Replace("\r", "\n").Split('\n');
@@ -181,12 +171,12 @@ namespace KKdMainLib
}
else if (dict.FV(out length, "pv_list.data_list.length"))
{
PVList = new PV[length];
PVListTable = new PV[length];
for (i0 = 0; i0 < length; i0++)
{
name = "pv_list" + c + i0 + c;
ref PV pv = ref PVList[i0];
ref PV pv = ref PVListTable[i0];
dict.FV(out pv.ID , name + "id" );
dict.FV(out pv.Ignore, name + "ignore");
dict.FV(out pv.Name , name + "name" );
@@ -256,18 +246,18 @@ namespace KKdMainLib
static TableDate GetStartTableDate(TableDict dict, string name)
{
TableDate date = default; date.SDL(); int val;
if (dict.FV(out val, name + "st_day" )) date.Day = val;
if (dict.FV(out val, name + "st_month")) date.Month = val;
if (dict.FV(out val, name + "st_year" )) date.Year = val;
if (dict.FV(out val, name + "st_month")) date.Month = val;
if (dict.FV(out val, name + "st_day" )) date.Day = val;
return date;
}
static TableDate GetEndTableDate(TableDict dict, string name)
{
TableDate date = default; date.SDU(); int val;
if (dict.FV(out val, name + "ed_day" )) date.Day = val;
if (dict.FV(out val, name + "ed_month")) date.Month = val;
if (dict.FV(out val, name + "ed_year" )) date.Year = val;
if (dict.FV(out val, name + "ed_month")) date.Month = val;
if (dict.FV(out val, name + "ed_day" )) date.Day = val;
return date;
}
}
@@ -280,57 +270,57 @@ namespace KKdMainLib
if (ButtonSETable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = ButtonSETable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "btn_se" + c + so[i0] + c;
ref ButtonSE btn = ref ButtonSETable[so[i0]];
WriteEndTableDate(_IO, name, btn.End);
WriteEndTableDate(s, name, btn.End);
W(name + "id" , btn. ID );
W(name + "name" , btn. Name );
W(name + "se_name" , btn. SEName );
W(name + "sort_index", btn.SortIndex);
WriteStartTableDate(_IO, name, btn.Start);
WriteStartTableDate(s, name, btn.Start);
}
W("btn_se.data_list.length", length);
_IO.W("kind=0\n");
_IO.D();
s.W("kind=0\n");
s.D();
}
else if (ChainSlideSETable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = ChainSlideSETable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "chainslide_se" + c + so[i0] + c;
ref ChainSlideSE csld = ref ChainSlideSETable[so[i0]];
WriteEndTableDate(_IO, name, csld.End);
WriteEndTableDate(s, name, csld.End);
W(name + "failure_se_name" , csld.FailureSEName );
W(name + "first_se_name" , csld. FirstSEName );
W(name + "id" , csld. ID );
W(name + "name" , csld. Name );
W(name + "sort_index", csld. SortIndex);
WriteStartTableDate(_IO, name, csld.Start);
WriteStartTableDate(s, name, csld.Start);
W(name + "sub_se_name" , csld. SubSEName );
W(name + "success_se_name" , csld.SuccessSEName );
}
W("chainslide_se.data_list.length", length);
_IO.W("kind=2\n");
_IO.D();
s.W("kind=2\n");
s.D();
}
else if (CollectionCardTable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = CollectionCardTable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "collection_card" + c + so[i0] + c;
@@ -339,29 +329,29 @@ namespace KKdMainLib
W(name + "chara" , clcrd.Chara );
W(name + "disp_num" , clcrd.DispNum );
W(name + "divapro_param", clcrd.DivaProParam);
WriteEndTableDate(_IO, name, clcrd.End);
WriteEndTableDate(s, name, clcrd.End);
W(name + "id" , clcrd.ID );
W(name + "module_author", clcrd.ModuleAuthor);
W(name + "name" , clcrd.Name );
W(name + "name_reading" , clcrd.NameReading );
W(name + "ng" , clcrd.NG );
W(name + "sort_idx" , clcrd.SortIndex );
WriteStartTableDate(_IO, name, clcrd.Start);
WriteStartTableDate(s, name, clcrd.Start);
W(name + "type" , clcrd.Type );
W(name + "type_param" , clcrd.TypeParam );
W(name + "wall_param" , clcrd.WallParam );
}
W("collection_card.data_list.length", length);
_IO.W("patch=0\n");
_IO.W("version=0\n");
_IO.D();
s.W("patch=0\n");
s.W("version=0\n");
s.D();
}
else if (CustomizeItemTable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = CustomizeItemTable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "cstm_item" + c + so[i0] + c;
@@ -374,22 +364,22 @@ namespace KKdMainLib
W(name + "obj_id" , czitm.ObjID );
W(name + "parts" , czitm.Parts );
W(name + "sell_type" , czitm.SellType );
WriteEndTableDate(_IO, name + "shop_", czitm.ShopEnd);
WriteEndTableDate(s, name + "shop_", czitm.ShopEnd);
W(name + "shop_price", czitm.ShopPrice);
WriteStartTableDate(_IO, name + "shop_", czitm.ShopStart);
WriteStartTableDate(s, name + "shop_", czitm.ShopStart);
W(name + "sort_index", czitm.SortIndex);
}
W("cstm_item.data_list.length", length);
_IO.W("patch=0\n");
_IO.W("version=0\n");
_IO.D();
s.W("patch=0\n");
s.W("version=0\n");
s.D();
}
else if (ModuleTable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = ModuleTable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "module" + c + so[i0] + c;
@@ -401,20 +391,20 @@ namespace KKdMainLib
W(name + "id" , mdl.ID );
W(name + "name" , mdl.Name );
W(name + "ng" , mdl.NG );
WriteEndTableDate(_IO, name + "shop_", mdl.ShopEnd);
WriteEndTableDate(s, name + "shop_", mdl.ShopEnd);
W(name + "shop_price", mdl.ShopPrice);
WriteStartTableDate(_IO, name + "shop_", mdl.ShopStart);
WriteStartTableDate(s, name + "shop_", mdl.ShopStart);
W(name + "sort_index", mdl.SortIndex);
}
W("module.data_list.length", length);
_IO.D();
s.D();
}
else if (PlateTable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = PlateTable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "plate" + c + so[i0] + c;
@@ -435,37 +425,37 @@ namespace KKdMainLib
W(name + "shadow_color_r", plt.ShadowColorR);
}
W("plate.data_list.length", length);
_IO.D();
s.D();
}
else if (PVList != null)
else if (PVListTable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
length = PVList.Length;
s = File.OpenWriter(file + ".bin", true);
length = PVListTable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
WriteEmptyLines(s, length);
for (i0 = 0; i0 < length; i0++)
{
name = "pv_list" + c + so[i0] + c;
ref PV pv = ref PVList[so[i0]];
WriteEndTableDate(_IO, name + "adv_demo_", pv.AdvEnd );
WriteStartTableDate(_IO, name + "adv_demo_", pv.AdvStart);
ref PV pv = ref PVListTable[so[i0]];
WriteEndTableDate(s, name + "adv_demo_", pv.AdvEnd );
WriteStartTableDate(s, name + "adv_demo_", pv.AdvStart);
WriteDifficulty(_IO, name + "easy.", pv.Easy );
WriteDifficulty(_IO, name + "encore.", pv.Encore );
WriteDifficulty(_IO, name + "extreme.", pv.Extreme);
WriteDifficulty(_IO, name + "hard.", pv.Hard );
WriteDifficulty(s, name + "easy.", pv.Easy );
WriteDifficulty(s, name + "encore.", pv.Encore );
WriteDifficulty(s, name + "extreme.", pv.Extreme);
WriteDifficulty(s, name + "hard.", pv.Hard );
W(name + "id" , pv.ID );
W(name + "ignore", pv.Ignore);
W(name + "name" , pv.Name );
WriteDifficulty(_IO, name + "extreme.", pv.Normal );
WriteDifficulty(s, name + "normal.", pv.Normal );
}
W("pv_list.data_list.length", length);
_IO.D();
s.D();
static void WriteDifficulty(Stream _IO, string name, PV.Difficulty[] arr)
{
if (arr == null) { _IO.W($"{name}.length=0\n"); return; }
if (arr == null) { _IO.W($"{name}length=0\n"); return; }
int length = arr.Length;
int[] so = length.SW();
@@ -473,57 +463,57 @@ namespace KKdMainLib
{
ref PV.Difficulty diff = ref arr[so[i]];
WriteStartTableDate(_IO, $"{name}{i}.", diff.Start);
_IO.W($"{name}{i}.edition" + $"={diff.Edition}\n");
WriteEndTableDate(_IO, $"{name}{i}.", diff.End );
_IO.W($"{name}{i}.edition" + $"={diff.Edition}\n");
WriteStartTableDate(_IO, $"{name}{i}.", diff.Start);
_IO.W($"{name}{i}.ver" + $"={diff.Version}\n");
}
_IO.W($"{name}.length={length}\n");
_IO.W($"{name}length={length}\n");
}
}
else if (SlideSETable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = SlideSETable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
_IO.W("kind=1\n");
WriteEmptyLines(s, length);
s.W("kind=1\n");
for (i0 = 0; i0 < length; i0++)
{
name = "slide_se" + c + so[i0] + c;
ref SlideSE sld = ref SlideSETable[so[i0]];
WriteEndTableDate(_IO, name, sld.End);
WriteEndTableDate(s, name, sld.End);
W(name + "id" , sld. ID );
W(name + "name" , sld. Name );
W(name + "se_name" , sld. SEName );
W(name + "sort_index", sld.SortIndex);
WriteStartTableDate(_IO, name, sld.Start);
WriteStartTableDate(s, name, sld.Start);
}
W("slide_se.data_list.length", length);
_IO.D();
s.D();
}
else if (SliderTouchSETable != null)
{
_IO = File.OpenWriter(file + ".bin", true);
s = File.OpenWriter(file + ".bin", true);
length = SliderTouchSETable.Length;
so = length.SW();
WriteEmptyLines(_IO, length);
_IO.W("kind=3\n");
WriteEmptyLines(s, length);
s.W("kind=3\n");
for (i0 = 0; i0 < length; i0++)
{
name = "slidertouch_se" + c + so[i0] + c;
ref SliderTouchSE sldt = ref SliderTouchSETable[so[i0]];
WriteEndTableDate(_IO, name, sldt.End);
WriteEndTableDate(s, name, sldt.End);
W(name + "id" , sldt. ID );
W(name + "name" , sldt. Name );
W(name + "se_name" , sldt. SEName );
W(name + "sort_index", sldt.SortIndex);
WriteStartTableDate(_IO, name, sldt.Start);
WriteStartTableDate(s, name, sldt.Start);
}
W("slidertouch_se.data_list.length", length);
_IO.D();
s.D();
}
static void WriteEmptyLines(Stream _IO, int count)
@@ -545,15 +535,15 @@ namespace KKdMainLib
}
private void W(string Data, long val) =>
_IO.W(Data + "=" + val + "\n");
s.W(Data + "=" + val + "\n");
private void W(string Data, string val)
{ if (val != null) _IO.W(Data + "=" + val + "\n"); }
{ if (val != null) s.W(Data + "=" + val + "\n"); }
public void MsgPackReader(string file, bool json)
{
ButtonSETable = null; ChainSlideSETable = null; SlideSETable = null; SliderTouchSETable = null;
CollectionCardTable = null; CustomizeItemTable = null;
ModuleTable = null; PlateTable = null; PVList = null;
ModuleTable = null; PlateTable = null; PVListTable = null;
MsgPack msgPack = file.ReadMPAllAtOnce(json);
MsgPack temp;
@@ -679,13 +669,13 @@ namespace KKdMainLib
pltMP.R("ShadowColorR", out plt.ShadowColorR);
}
}
else if ((temp = msgPack["PV", true]).NotNull)
else if ((temp = msgPack["PVList", true]).NotNull)
{
PVList = new PV[temp.Array.Length];
for (i0 = 0; i0 < PVList.Length; i0++)
PVListTable = new PV[temp.Array.Length];
for (i0 = 0; i0 < PVListTable.Length; i0++)
{
MsgPack pvMP = temp[i0];
ref PV pv = ref PVList[i0];
ref PV pv = ref PVListTable[i0];
pv.AdvEnd .SV(pvMP.RnI32("AdvEnd" ), true);
pv.AdvStart.SV(pvMP.RnI32("AdvStart"), false);
@@ -875,12 +865,12 @@ namespace KKdMainLib
}
msgPack.Add(plateTable);
}
else if (PVList != null)
else if (PVListTable != null)
{
MsgPack pvList = new MsgPack(PVList.Length, "PVList");
for (i0 = 0; i0 < PVList.Length; i0++)
MsgPack pvList = new MsgPack(PVListTable.Length, "PVList");
for (i0 = 0; i0 < PVListTable.Length; i0++)
{
ref PV pv = ref PVList[i0];
ref PV pv = ref PVListTable[i0];
MsgPack mp = MsgPack.New.Add("AdvEnd" , pv.AdvEnd .Int)
.Add("AdvStart", pv.AdvStart.Int);
@@ -942,18 +932,18 @@ namespace KKdMainLib
}
msgPack.Add(sliderTouchSETable);
}
if (msgPack.List.Count == 1) msgPack.Write(file, json);
if (msgPack.List.Count == 1) msgPack.Write(file, false, json);
}
private bool disposed;
public void Dispose()
{
if (disposed) return;
if (_IO != null) _IO.D(); _IO = null;
if (s != null) s.D(); s = null;
if (dict != null) { dict.Clear(); dict = null; }
ButtonSETable = null; ChainSlideSETable = null; SlideSETable = null; SliderTouchSETable = null;
CollectionCardTable = null; CustomizeItemTable = null;
ModuleTable = null; PlateTable = null; PVList = null;
ModuleTable = null; PlateTable = null; PVListTable = null; disposed = true;
}
}
}
Binary file not shown.
+6 -5
View File
@@ -24,9 +24,10 @@ namespace KKdSoundLib
Data.SampleRate = reader.RI32();
Data.SamplesCount = reader.RI32();
reader.RI64();
Data.Channels = reader.RU16();
Data.Channels = reader.RU8();
reader.RU8();
reader.RU16();
Data.Name = reader.RS(0x20);
reader.RBy(0x20);
byte value = 0;
byte[] data = new byte[Data.SamplesCount * Data.Channels * 4];
@@ -39,6 +40,7 @@ namespace KKdSoundLib
fixed (sbyte* stepindexPtr = stepindex)
fixed (byte* ptr = data)
{
reader.S(0, SeekOrigin.Begin);
float* dataPtr = (float*)ptr;
for (i = 0; i < Data.SamplesCount; i++)
for (c = 0; c < Data.Channels; c++, dataPtr++)
@@ -76,7 +78,7 @@ namespace KKdSoundLib
if (!Header.IsSupported) { reader.C(); return; }
Stream writer = File.OpenWriter(file + ".diva", true);
Data.Channels = Header.Channels;
Data.Channels = (byte)Header.Channels;
Data.SampleRate = Header.SampleRate;
Data.SamplesCount = Header.Size / Header.Channels / Header.Bytes;
writer.PI64 = 0x40;
@@ -198,8 +200,7 @@ namespace KKdSoundLib
public int Size;
public int SampleRate;
public int SamplesCount;
public string Name;
public ushort Channels;
public byte Channels;
public byte[] Data;
}
}
+8 -8
View File
@@ -1,17 +1,17 @@
<?xml version="1.0" encoding="utf-8"?>
<?xml version="1.0" encoding="utf-8"?>
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<Authors>korenkonder</Authors>
<Company></Company>
<Configuration></Configuration>
<Copyright>korenkonder © 2019-2020</Copyright>
<Description>A simple library for working with Project Diva F/AFT/F2/X/FT audio files</Description>
<FileVersion>0.1.2.0</FileVersion>
<Copyright>korenkonder (C) 2019-2022</Copyright>
<Description>A simple library for working with Project Diva F/AFT/F2/X/XHD/FT/VRFL/M39 audio files</Description>
<FileVersion>0.1.2.1</FileVersion>
<PackageId>KKdSoundLib</PackageId>
<Product>KKdSoundLib</Product>
<TargetFramework>netstandard2.0</TargetFramework>
<TargetFramework>net461</TargetFramework>
<Title>KKdSoundLib</Title>
<Version>0.1.2.0</Version>
<Version>0.1.2.1</Version>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -24,7 +24,7 @@
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
@@ -37,7 +37,7 @@
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj" />
+1 -1
View File
@@ -1,4 +1,4 @@
using System.Reflection;
using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTrademark("")]
+828 -828
View File
File diff suppressed because it is too large Load Diff
+82 -183
View File
@@ -1,184 +1,83 @@
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<Import Project="$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props" Condition="Exists('$(MSBuildExtensionsPath)\$(MSBuildToolsVersion)\Microsoft.Common.props')" />
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}</ProjectGuid>
<OutputType>Exe</OutputType>
<RootNamespace>PD_Tool</RootNamespace>
<AssemblyName>PD_Tool</AssemblyName>
<TargetFrameworkVersion>v4.6.1</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<AutoGenerateBindingRedirects>true</AutoGenerateBindingRedirects>
<RunPostBuildEvent>Always</RunPostBuildEvent>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>..\build\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugType>embedded</DebugType>
<Optimize>true</Optimize>
<OutputPath>..\build\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0044, IDE0045, IDE0046, IDE0055, IDE0059, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<Compile Include="classes\A3D.cs" />
<Compile Include="classes\ADP.cs" />
<Compile Include="classes\AET.cs" />
<Compile Include="classes\BLT.cs" />
<Compile Include="classes\CCT.cs" />
<Compile Include="classes\DataBase.cs" />
<Compile Include="classes\DB.cs" />
<Compile Include="classes\DEX.cs" />
<Compile Include="classes\DFT.cs" />
<Compile Include="classes\DIV.cs" />
<Compile Include="classes\DIVAFILE.cs" />
<Compile Include="classes\FARC.cs" />
<Compile Include="classes\LIT.cs" />
<Compile Include="classes\MHD.cs" />
<Compile Include="classes\MOT.cs" />
<Compile Include="classes\STR.cs" />
<Compile Include="classes\TBL.cs" />
<Compile Include="classes\VAG.cs" />
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Drawing" />
<Reference Include="System.Numerics" />
<Reference Include="System.Windows.Forms" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj">
<Project>{437f63f1-8c23-429e-ab14-38b85c9edb16}</Project>
<Name>KKdBaseLib</Name>
</ProjectReference>
<ProjectReference Include="..\KKdMainLib\KKdMainLib.csproj">
<Project>{2ba7efc6-91d1-8bbc-c487-06c7f36cc789}</Project>
<Name>KKdMainLib</Name>
</ProjectReference>
<ProjectReference Include="..\KKdSoundLib\KKdSoundLib.csproj">
<Project>{d8a3f2d7-10cc-5723-ec9a-45d3b9c2df77}</Project>
<Name>KKdSoundLib</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
<PropertyGroup>
<PostBuildEvent>del Microsoft.Win32.Primitives.dll
del netstandard.dll
del PD_Tool.exe.config
del System.AppContext.dll
del System.Collections.Concurrent.dll
del System.Collections.dll
del System.Collections.NonGeneric.dll
del System.Collections.Specialized.dll
del System.ComponentModel.dll
del System.ComponentModel.EventBasedAsync.dll
del System.ComponentModel.Primitives.dll
del System.ComponentModel.TypeConverter.dll
del System.Console.dll
del System.Data.Common.dll
del System.Diagnostics.Contracts.dll
del System.Diagnostics.Debug.dll
del System.Diagnostics.FileVersionInfo.dll
del System.Diagnostics.Process.dll
del System.Diagnostics.StackTrace.dll
del System.Diagnostics.TextWriterTraceListener.dll
del System.Diagnostics.Tools.dll
del System.Diagnostics.TraceSource.dll
del System.Diagnostics.Tracing.dll
del System.Drawing.Primitives.dll
del System.Dynamic.Runtime.dll
del System.Globalization.Calendars.dll
del System.Globalization.dll
del System.Globalization.Extensions.dll
del System.IO.Compression.dll
del System.IO.Compression.ZipFile.dll
del System.IO.dll
del System.IO.FileSystem.dll
del System.IO.FileSystem.DriveInfo.dll
del System.IO.FileSystem.Primitives.dll
del System.IO.FileSystem.Watcher.dll
del System.IO.IsolatedStorage.dll
del System.IO.MemoryMappedFiles.dll
del System.IO.Pipes.dll
del System.IO.UnmanagedMemoryStream.dll
del System.Linq.dll
del System.Linq.Expressions.dll
del System.Linq.Parallel.dll
del System.Linq.Queryable.dll
del System.Net.Http.dll
del System.Net.NameResolution.dll
del System.Net.NetworkInformation.dll
del System.Net.Ping.dll
del System.Net.Primitives.dll
del System.Net.Requests.dll
del System.Net.Security.dll
del System.Net.Sockets.dll
del System.Net.WebHeaderCollection.dll
del System.Net.WebSockets.Client.dll
del System.Net.WebSockets.dll
del System.ObjectModel.dll
del System.Reflection.dll
del System.Reflection.Extensions.dll
del System.Reflection.Primitives.dll
del System.Resources.Reader.dll
del System.Resources.ResourceManager.dll
del System.Resources.Writer.dll
del System.Runtime.CompilerServices.VisualC.dll
del System.Runtime.dll
del System.Runtime.Extensions.dll
del System.Runtime.Handles.dll
del System.Runtime.InteropServices.dll
del System.Runtime.InteropServices.RuntimeInformation.dll
del System.Runtime.Numerics.dll
del System.Runtime.Serialization.Formatters.dll
del System.Runtime.Serialization.Json.dll
del System.Runtime.Serialization.Primitives.dll
del System.Runtime.Serialization.Xml.dll
del System.Security.Claims.dll
del System.Security.Cryptography.Algorithms.dll
del System.Security.Cryptography.Csp.dll
del System.Security.Cryptography.Encoding.dll
del System.Security.Cryptography.Primitives.dll
del System.Security.Cryptography.X509Certificates.dll
del System.Security.Principal.dll
del System.Security.SecureString.dll
del System.Text.Encoding.dll
del System.Text.Encoding.Extensions.dll
del System.Text.RegularExpressions.dll
del System.Threading.dll
del System.Threading.Overlapped.dll
del System.Threading.Tasks.dll
del System.Threading.Tasks.Parallel.dll
del System.Threading.Thread.dll
del System.Threading.ThreadPool.dll
del System.Threading.Timer.dll
del System.ValueTuple.dll
del System.Xml.ReaderWriter.dll
del System.Xml.XDocument.dll
del System.Xml.XmlDocument.dll
del System.Xml.XmlSerializer.dll
del System.Xml.XPath.dll
del System.Xml.XPath.XDocument.dll</PostBuildEvent>
</PropertyGroup>
<?xml version="1.0" encoding="utf-8"?>
<Project ToolsVersion="15.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<PropertyGroup>
<Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
<Platform Condition=" '$(Platform)' == '' ">AnyCPU</Platform>
<ProjectGuid>{7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E}</ProjectGuid>
<OutputType>Exe</OutputType>
<RootNamespace>PD_Tool</RootNamespace>
<AssemblyName>PD_Tool</AssemblyName>
<TargetFrameworkVersion>v4.6.1</TargetFrameworkVersion>
<FileAlignment>512</FileAlignment>
<AutoGenerateBindingRedirects>true</AutoGenerateBindingRedirects>
<RunPostBuildEvent>Always</RunPostBuildEvent>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Debug|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugSymbols>true</DebugSymbols>
<DebugType>full</DebugType>
<Optimize>false</Optimize>
<OutputPath>..\build\</OutputPath>
<DefineConstants>DEBUG;TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<PropertyGroup Condition=" '$(Configuration)|$(Platform)' == 'Release|AnyCPU' ">
<PlatformTarget>AnyCPU</PlatformTarget>
<DebugType>embedded</DebugType>
<Optimize>true</Optimize>
<OutputPath>..\build\</OutputPath>
<DefineConstants>TRACE</DefineConstants>
<ErrorReport>prompt</ErrorReport>
<WarningLevel>4</WarningLevel>
<DebugSymbols>true</DebugSymbols>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<LangVersion>8.0</LangVersion>
<NoWarn>IDE0004, IDE0018, IDE0032, IDE0044, IDE0045, IDE0046, IDE0051, IDE0055, IDE0059, IDE0063, IDE0066, IDE0069, IDE1006</NoWarn>
</PropertyGroup>
<ItemGroup>
<Compile Include="classes\A3D.cs" />
<Compile Include="classes\AET.cs" />
<Compile Include="classes\BLT.cs" />
<Compile Include="classes\CCT.cs" />
<Compile Include="classes\DataBase.cs" />
<Compile Include="classes\DB.cs" />
<Compile Include="classes\DEX.cs" />
<Compile Include="classes\DFT.cs" />
<Compile Include="classes\DIV.cs" />
<Compile Include="classes\DIVAFILE.cs" />
<Compile Include="classes\FARC.cs" />
<Compile Include="classes\LIT.cs" />
<Compile Include="classes\MHD.cs" />
<Compile Include="classes\MOT.cs" />
<Compile Include="classes\STR.cs" />
<Compile Include="classes\TBL.cs" />
<Compile Include="classes\VAG.cs" />
<Compile Include="Program.cs" />
<Compile Include="Properties\AssemblyInfo.cs" />
</ItemGroup>
<ItemGroup>
<Reference Include="System" />
<Reference Include="System.Drawing" />
<Reference Include="System.Numerics" />
<Reference Include="System.Windows.Forms" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\KKdBaseLib\KKdBaseLib.csproj">
<Project>{437f63f1-8c23-429e-ab14-38b85c9edb16}</Project>
<Name>KKdBaseLib</Name>
</ProjectReference>
<ProjectReference Include="..\KKdMainLib\KKdMainLib.csproj">
<Project>{2ba7efc6-91d1-8bbc-c487-06c7f36cc789}</Project>
<Name>KKdMainLib</Name>
</ProjectReference>
<ProjectReference Include="..\KKdSoundLib\KKdSoundLib.csproj">
<Project>{d8a3f2d7-10cc-5723-ec9a-45d3b9c2df77}</Project>
<Name>KKdSoundLib</Name>
</ProjectReference>
</ItemGroup>
<Import Project="$(MSBuildToolsPath)\Microsoft.CSharp.targets" />
</Project>
+117 -82
View File
@@ -1,4 +1,4 @@
using System;
using System;
using System.Windows.Forms;
using KKdMainLib;
using KKdMainLib.IO;
@@ -29,7 +29,8 @@ namespace PD_Tool
foreach (string arg in args)
{
GC.Collect();
if (Directory.Exists(arg)) using (KKdFARC FARC = new KKdFARC(arg, true)) FARC.Pack();
if (Directory.Exists(arg))
using (KKdFARC FARC = new KKdFARC(arg, true) { CompressionLevel = 9 }) FARC.Pack();
else if (File.Exists(arg) && Path.GetExtension(arg) == ".farc")
using (KKdFARC farc = new KKdFARC(arg)) farc.Unpack(true);
else if (File.Exists(arg))
@@ -46,21 +47,23 @@ namespace PD_Tool
private static void MainMenu()
{
Console.Title = "PD_Tool v0.4.9.3";
Version ver = System.Reflection.Assembly.GetExecutingAssembly().GetName().Version;
Console.Title = $"PD_Tool v{ver}";
Console.Clear();
ConsoleDesign(true);
ConsoleDesign(" Choose action:");
ConsoleDesign(false);
ConsoleDesign("1. Extract FARC Archive");
ConsoleDesign("2. Create FARC Archive");
ConsoleDesign("3. Decrypt/Encrypt from/to DIVAFILE");
ConsoleDesign("4. DB_Tools");
ConsoleDesign("5. AC/DT/F/AFT Converting Tools");
ConsoleDesign("6. F/F2/FT Converting Tools");
ConsoleDesign("7. X/XHD Converting Tools");
ConsoleDesign("8. FT/M39 Converting Tools");
ConsoleDesign(json ? "9. MsgPack to JSON" : "9. JSON to MsgPack");
ConsoleDesign("2. Create FARC Archive");
ConsoleDesign("3. Decrypt from DIVAFILE");
ConsoleDesign("4. Encrypt to DIVAFILE");
ConsoleDesign("5. DB_Tools");
ConsoleDesign("6. AC/DT/F/AFT Converting Tools");
ConsoleDesign("7. F/F2/FT Converting Tools");
ConsoleDesign("8. X/XHD/VRFL Converting Tools");
ConsoleDesign("9. FT/M39 Converting Tools");
ConsoleDesign(json ? "A. MsgPack to JSON" : "A. JSON to MsgPack");
ConsoleDesign(false);
ConsoleDesign(json ? "M. MessagePack" : "J. JSON");
ConsoleDesign("Q. Quit");
@@ -75,6 +78,7 @@ namespace PD_Tool
if (choose == null || choose == "") return;
if (choose[0] == 'M') json = false;
else if (choose[0] == 'J') json = true ;
else if (choose[0] >= 'A' && choose[0] <= 'A') Functions();
}
private static void Functions()
@@ -88,8 +92,14 @@ namespace PD_Tool
Choose(1, "", out string[] FileNames);
foreach (string FileName in FileNames) DIVAFILE.Decrypt(FileName);
}
else if (choose[0] == '4') DataBase.Processor(json);
else if (choose[0] == '4')
{
Choose(1, "", out string[] FileNames);
foreach (string FileName in FileNames) DIVAFILE.Encrypt(FileName);
}
else if (choose[0] == '5')
DataBase.Processor(json, choose.Length > 1 ? choose[1] : '\0');
else if (choose[0] == '6')
{
string localChoose = "";
if (choose.Length == 1)
@@ -106,8 +116,8 @@ namespace PD_Tool
ConsoleDesign("5. DIVA" );
ConsoleDesign("6. MotHead" );
ConsoleDesign("7. MOT" );
ConsoleDesign("8. Table" );
ConsoleDesign("9. STR" );
ConsoleDesign("8. STR" );
ConsoleDesign("9. Table" );
ConsoleDesign(false);
ConsoleDesign("R. Return to Main Menu");
ConsoleDesign(false);
@@ -123,11 +133,11 @@ namespace PD_Tool
else if (localChoose == "5") DIV.Processor();
else if (localChoose == "6") MHD.Processor(json);
else if (localChoose == "7") MOT.Processor(json);
else if (localChoose == "8") TBL.Processor(json);
else if (localChoose == "9") STR.Processor(json);
else if (localChoose == "8") STR.Processor(json);
else if (localChoose == "9") TBL.Processor(json);
else choose = localChoose;
}
else if (choose[0] == '6')
else if (choose[0] == '7')
{
string localChoose = "";
if (choose.Length == 1)
@@ -154,28 +164,32 @@ namespace PD_Tool
}
else localChoose = choose[1].ToString();
if (localChoose == "1") A3D.Processor(json);
else if (localChoose == "2") BLT.Processor();
else if (localChoose == "3") CCT.Processor();
else if (localChoose == "2") BLT.Processor(json);
else if (localChoose == "3") CCT.Processor(json);
else if (localChoose == "4") DEX.Processor(json);
else if (localChoose == "5") DFT.Processor();
else if (localChoose == "6") LIT.Processor();
else if (localChoose == "5") DFT.Processor(json);
else if (localChoose == "6") LIT.Processor(json);
else if (localChoose == "7") STR.Processor(json);
else if (localChoose == "8") VAG.Processor();
else choose = localChoose;
}
else if (choose[0] == '7')
else if (choose[0] == '8')
{
string localChoose = "";
if (choose.Length == 1)
{
Console.Clear();
Console.Title = "X/XHD Converting Tools";
Console.Title = "X/XHD/VRFL Converting Tools";
ConsoleDesign(true);
ConsoleDesign(" Choose converter:");
ConsoleDesign(false);
ConsoleDesign("1. A3DA" );
ConsoleDesign("2. DEX" );
ConsoleDesign("3. VAG" );
ConsoleDesign("1. A3DA");
ConsoleDesign("2. Bloom" );
ConsoleDesign("3. Color Correction");
ConsoleDesign("4. DEX" );
ConsoleDesign("5. DOF" );
ConsoleDesign("6. Light" );
ConsoleDesign("7. VAG" );
ConsoleDesign(false);
ConsoleDesign("R. Return to Main Menu");
ConsoleDesign(false);
@@ -185,44 +199,51 @@ namespace PD_Tool
}
else localChoose = choose[1].ToString();
if (localChoose == "1") A3D.Processor(json);
else if (localChoose == "2") DEX.Processor(json);
else if (localChoose == "3") VAG.Processor();
else choose = localChoose;
}
else if (choose[0] == '8')
{
Console.Clear();
Console.Title = "FT/M39 Converting Tools";
ConsoleDesign(true);
ConsoleDesign(" Choose converter:");
ConsoleDesign(false);
ConsoleDesign("1. A3DA" );
ConsoleDesign("2. AddParam");
ConsoleDesign("3. AET" );
ConsoleDesign("4. DEX" );
ConsoleDesign("5. DIVA" );
ConsoleDesign("6. MotHead" );
ConsoleDesign("7. MOT" );
ConsoleDesign("8. Table" );
ConsoleDesign("9. STR" );
ConsoleDesign(false);
ConsoleDesign("R. Return to Main Menu");
ConsoleDesign(false);
ConsoleDesign(true);
Console.WriteLine();
string localChoose = Console.ReadLine().ToUpper();
if (localChoose == "1") A3D.Processor(json);
else if (localChoose == "2") ADP.Processor(json);
else if (localChoose == "3") AET.Processor(json);
else if (localChoose == "2") BLT.Processor(json);
else if (localChoose == "3") CCT.Processor(json);
else if (localChoose == "4") DEX.Processor(json);
else if (localChoose == "5") DIV.Processor();
else if (localChoose == "6") MHD.Processor(json);
else if (localChoose == "7") MOT.Processor(json);
else if (localChoose == "8") TBL.Processor(json);
else if (localChoose == "9") STR.Processor(json);
else if (localChoose == "5") DFT.Processor(json);
else if (localChoose == "6") LIT.Processor(json);
else if (localChoose == "7") VAG.Processor();
else choose = localChoose;
}
else if (choose == "9")
else if (choose[0] == '9')
{
string localChoose = "";
if (choose.Length == 1)
{
Console.Clear();
Console.Title = "FT/M39 Converting Tools";
ConsoleDesign(true);
ConsoleDesign(" Choose converter:");
ConsoleDesign(false);
ConsoleDesign("1. A3DA" );
ConsoleDesign("2. AET" );
ConsoleDesign("3. DEX" );
ConsoleDesign("4. DIVA" );
ConsoleDesign("5. MotHead" );
ConsoleDesign("6. MOT" );
ConsoleDesign("7. STR" );
ConsoleDesign("8. Table" );
ConsoleDesign(false);
ConsoleDesign("R. Return to Main Menu");
ConsoleDesign(false);
ConsoleDesign(true);
Console.WriteLine();
localChoose = Console.ReadLine().ToUpper();
}
else localChoose = choose[1].ToString();
if (localChoose == "1") A3D.Processor(json);
else if (localChoose == "2") AET.Processor(json);
else if (localChoose == "3") DEX.Processor(json);
else if (localChoose == "4") DIV.Processor();
else if (localChoose == "5") MHD.Processor(json);
else if (localChoose == "6") MOT.Processor(json);
else if (localChoose == "7") STR.Processor(json);
else if (localChoose == "8") TBL.Processor(json);
else choose = localChoose;
}
else if (choose[0] == 'A')
{
Console.Title = json ? "MsgPack to JSON" : "JSON to MsgPack";
Choose(1, json ? "mp" : "json", out string[] fileNames);
@@ -230,30 +251,30 @@ namespace PD_Tool
if (json)
{
Console.Title = "MsgPack to JSON: " + Path.GetFileNameWithoutExtension(file);
file.Replace(Path.GetExtension(file), "").ToJSON ();
Path.RemoveExtension(file).ToJSON ();
}
else
{
Console.Title = "JSON to MsgPack: " + Path.GetFileNameWithoutExtension(file);
file.Replace(Path.GetExtension(file), "").ToMsgPack();
Path.RemoveExtension(file).ToMsgPack();
}
}
}
public static void Exit() => Environment.Exit(0);
public static void ConsoleDesign(string text, params string[] args)
{
text = string.Format(text, args);
string Text = " ";
string Text = "X X";
Text = Text.Remove(3) + text + Text.Remove(0, text.Length + 3);
Console.WriteLine(Text);
}
public static void ConsoleDesign(bool Fill)
{
if (Fill) Console.WriteLine("████████████████████████████████████████████████████");
else Console.WriteLine(" ");
if (Fill) Console.WriteLine("XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX");
else Console.WriteLine("X X");
}
private static string GetArgs(string name, bool And, params string[] ext)
@@ -278,50 +299,64 @@ namespace PD_Tool
public static string Choose(int code, string filetype, out string[] FileNames)
{
string mp = GetArgs("MessagePack", true, "mp" );
string json = GetArgs("JSON" , true, "json");
string bin = GetArgs("BIN" , true, "bin" );
string wav = GetArgs("WAV" , true, "wav" );
FileNames = new string[0];
if (code == 1)
{
string Filter = GetArgs("All;", false, "*");
string mp = GetArgs("MessagePack", true, "mp" );
string json = GetArgs("JSON" , true, "json");
string bin = GetArgs("BIN" , true, "bin" );
string wav = GetArgs("WAV" , true, "wav" );
string Filter = GetArgs("All", false, "*");
if (filetype == "a3da") Filter = GetArgs("A3DA", "a3da", "farc", "json", "mp") +
GetArgs("A3DA", true, "a3da") + GetArgs("FARC", true, "farc") + json + mp;
else if (filetype == "bin" ) Filter = GetArgs("BIN" , "bin", "json", "mp") +
bin + json + mp;
else if (filetype == "blt" ) Filter = GetArgs("BLT" , "blt");
else if (filetype == "blt" ) Filter = GetArgs("BLT" , "blt", "json", "mp") +
GetArgs("BLT", true, "blt") + json + mp;
else if (filetype == "bon" ) Filter = GetArgs("BON" , "bon", "bin", "json", "mp") +
GetArgs("BON", true, "bon") + bin + json + mp;
else if (filetype == "cct" ) Filter = GetArgs("CCT" , "cct");
else if (filetype == "cct" ) Filter = GetArgs("CCT" , "cct", "json", "mp") +
GetArgs("CCT", true, "cct") + json + mp;
else if (filetype == "databank") Filter = GetArgs("DAT", "dat", "json", "mp") +
GetArgs("DAT", true, "dat") + json + mp;
else if (filetype == "dex" ) Filter = GetArgs("DEX" , "dex", "bin", "json", "mp") +
GetArgs("DEX", true, "dex") + bin + json + mp;
else if (filetype == "dft" ) Filter = GetArgs("DFT" , "dft");
else if (filetype == "dft" ) Filter = GetArgs("DFT" , "dft", "json", "mp") +
GetArgs("DFT", true, "dft") + json + mp;
else if (filetype == "diva") Filter = GetArgs("DIVA", "diva", "wav") +
GetArgs("DIVA", true, "diva") + wav;
else if (filetype == "dsc" ) Filter = GetArgs("DSC" , "dsc", "json", "mp") +
GetArgs("DSC", true, "dsc") + json + mp;
else if (filetype == "dve" ) Filter = GetArgs("Particle", "dve", "farc", "json", "mp") +
GetArgs("Particle", true, "dve") + GetArgs("Particle", true, "farc") + json + mp;
else if (filetype == "farc") Filter = GetArgs("FARC", "farc");
else if (filetype == "json") Filter = GetArgs("JSON", "json");
else if (filetype == "igb" ) Filter = GetArgs("IGB", "igb");
else if (filetype == "mgftxt") Filter = GetArgs("MGF2AFT txt", "txt");
else if (filetype == "mhd" ) Filter = GetArgs("MotHead", "mhd", "bin", "json", "mp") +
GetArgs("MotHead", true, "mhd") + bin + json + mp;
else if (filetype == "mp" ) Filter = GetArgs("MessagePack", "mp");
else if (filetype == "lit") Filter = GetArgs("LIT" , "lit");
else if (filetype == "lit") Filter = GetArgs("LIT" , "lit", "json", "mp") +
GetArgs("LIT", true, "lit") + json + mp;
else if (filetype == "pvdb") Filter = GetArgs("PV DB / PV Field", "txt", "json", "mp") +
GetArgs("PV DB / PV Field", true, "txt") + json + mp;
else if (filetype == "str" ) Filter = GetArgs("STR" , "str", "bin", "json", "mp") +
GetArgs("STR", true, "str") + bin + json + mp;
else if (filetype == "tbl" ) Filter = GetArgs("Table" , "bin", "farc", "json", "mp") +
bin + GetArgs("FARC Archives", true, "farc") + json + mp;
else if (filetype == "vag" ) Filter = GetArgs("VAG" , "vag", "wav") +
GetArgs("VAG", true, "vag") + wav;
using OpenFileDialog ofd = new OpenFileDialog { //InitialDirectory = Application.StartupPath,
Filter = Filter, Multiselect = true, Title = "Choose file(s) to open:" };
using OpenFileDialog ofd = new OpenFileDialog { Filter = Filter,
Multiselect = true, Title = "Choose file(s) to open:" };
if (ofd.ShowDialog() == DialogResult.OK) FileNames = ofd.FileNames;
}
else if (code == 2)
{
string Return = "";
using (OpenFileDialog ofd = new OpenFileDialog { //InitialDirectory = Application.StartupPath,
ValidateNames = false, CheckFileExists = false, Filter = " | ", CheckPathExists = true,
using (OpenFileDialog ofd = new OpenFileDialog { ValidateNames = false,
CheckFileExists = false, Filter = " | ", CheckPathExists = true,
Title = "Choose any file in folder:", FileName = "Folder Selection." })
if (ofd.ShowDialog() == DialogResult.OK) Return = Path.GetDirectoryName(ofd.FileName);
return Return;
+5 -5
View File
@@ -1,15 +1,15 @@
using System.Reflection;
using System.Reflection;
using System.Runtime.InteropServices;
[assembly: AssemblyTitle("PD_Tool")]
[assembly: AssemblyDescription("A simple tool for working with Project Diva AC/DT/F/AFT/F2/X/FT/M39 files")]
[assembly: AssemblyDescription("A simple tool for working with Project Diva AC/DT/F/AFT/F2/X/XHD/FT/VRFL/M39 files")]
[assembly: AssemblyConfiguration("")]
[assembly: AssemblyCompany("")]
[assembly: AssemblyProduct("PD_Tool")]
[assembly: AssemblyCopyright("korenkonder © 2017-2020")]
[assembly: AssemblyCopyright("korenkonder (C) 2017-2025")]
[assembly: AssemblyTrademark("")]
[assembly: AssemblyCulture("")]
[assembly: ComVisible(false)]
[assembly: Guid("7B5D5A3A-A6F8-4813-C97D-ACFC98F7397E")]
[assembly: AssemblyVersion("0.4.9.3")]
[assembly: AssemblyFileVersion("0.4.9.3")]
[assembly: AssemblyVersion("0.5.0.0")]
[assembly: AssemblyFileVersion("0.5.0.0")]
+72 -53
View File
@@ -20,78 +20,93 @@ namespace PD_Tool
Format format = Format.NULL;
string choose = "";
if (mp)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. A3DA [DT/AC/F]");
Program.ConsoleDesign("2. A3DC [DT/AC/F]");
Program.ConsoleDesign("3. A3DA [AFT/FT/M39]");
Program.ConsoleDesign("4. A3DC [AFT/FT/M39]");
Program.ConsoleDesign("5. A3DC [F2]");
Program.ConsoleDesign("6. A3DC [MGF]");
Program.ConsoleDesign("7. A3DC [X]");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
if (choose == "1") format = Format.DT ;
else if (choose == "2") format = Format.F ;
else if (choose == "3") format = Format.AFT;
else if (choose == "4") format = Format.AFT;
else if (choose == "5") format = Format.F2;
else if (choose == "6") format = Format.MGF;
else if (choose == "7") format = Format.X ;
else return;
}
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign(" Tip: A3DC Opt - A3DC Optimization");
Program.ConsoleDesign(" WARNING! CHECK RESULTS AFTER CONVERTING ");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. A3DA [DT/AC/F]");
Program.ConsoleDesign("2. A3DC [DT/AC/F]");
Program.ConsoleDesign("3. A3DA [AFT/FT/M39]");
Program.ConsoleDesign("4. A3DC [AFT/FT/M39]");
Program.ConsoleDesign("5. A3DC [F2]");
Program.ConsoleDesign("6. A3DC [MGF]");
Program.ConsoleDesign("7. A3DC [X]");
Program.ConsoleDesign("8. A3DC [XHD/VRFL]");
if (!mp) Program.ConsoleDesign($"9. {(json ? "JSON" : "MsgPack")}");
Program.ConsoleDesign(false);
Program.ConsoleDesign("X[Y] - X: option; Y: rounding in text (def. 9)");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
if (choose == null || choose.Length < 1)
return;
else if (choose[0] == '1') format = Format.DT ;
else if (choose[0] == '2') format = Format.F ;
else if (choose[0] == '3') format = Format.AFT;
else if (choose[0] == '4') format = Format.AFT;
else if (choose[0] == '5') format = Format.F2 ;
else if (choose[0] == '6') format = Format.MGF;
else if (choose[0] == '7') format = Format.X ;
else if (choose[0] == '8') format = Format.XHD;
else if (choose[0] == '9') format = Format.NULL;
else return;
if (int.TryParse(choose.Substring(1), out int rounding))
KKdA3DA.Rounding = rounding;
else
KKdA3DA.Rounding = 9;
int state;
string filepath, ext;
KKdA3DA a3da;
KKdFARC farc;
foreach (string file in fileNames)
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "A3DA Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".farc")
using (KKdFARC farc = new KKdFARC(file))
using (farc = new KKdFARC(file))
FARCProcessor(farc, choose, format);
else if (ext == ".a3da")
using (a3da = new KKdA3DA(true))
using (a3da = new KKdA3DA())
{
state = a3da.A3DAReader(filepath);
if (state == 1) a3da.MsgPackWriter(filepath, json);
if (state == 1)
if (choose[0] == '9') a3da.MsgPackWriter(filepath, json);
else
{
a3da.Head.Format = format;
File.WriteAllBytes(filepath + ".a3da", choose[0] == '1' || choose[0] == '3'
? a3da.A3DAWriter() : a3da.A3DCWriter());
}
}
else if (ext == ".mp" || ext == ".json")
using (a3da = new KKdA3DA(true))
using (a3da = new KKdA3DA())
{
a3da.MsgPackReader(filepath, ext == ".json");
a3da.Head.Format = format;
File.WriteAllBytes(filepath + ".a3da", (choose != "1" &&
choose != "3") ? a3da.A3DCWriter() : a3da.A3DAWriter());
File.WriteAllBytes(filepath + ".a3da", choose[0] == '1' || choose[0] == '3'
? a3da.A3DAWriter() : a3da.A3DCWriter());
}
}
}
private static void FARCProcessor(KKdFARC farc, string choose, Format format)
{
if (!farc.HeaderReader()) return;
if (!farc.HasFiles) return;
if (!farc.HeaderReader() || !farc.HasFiles) return;
KKdList<string> list = KKdList<string>.New;
for (int i = 0; i < farc.Files.Count; i++)
{
string file = farc.Files[i].Name.ToLower();
bool div = false;
for (int i0 = 0; i0 < 159 && !div; i0++)
if (file.Contains("div_" + i0)) div = true;
if (!div && file.EndsWith(".a3da")) list.Add(file);
if (!file.Contains("_div_") && file.EndsWith(".a3da")) list.Add(file);
}
KKdList<string> A3DAlist = KKdList<string>.New;
@@ -100,11 +115,11 @@ namespace PD_Tool
A3DAlist.Add(farc.Files[i].Name);
byte[] data = null;
if (list.Count == A3DAlist.Count || (format > Format.AFT && format < Format.FT))
if (list.Count == A3DAlist.Count)
{
KKdA3DA a3da;
for (int i = 0; i < A3DAlist.Count; i++)
using (a3da = new KKdA3DA(true))
using (a3da = new KKdA3DA())
{
data = farc.FileReader(A3DAlist[i]);
int state = a3da.A3DAReader(data);
@@ -112,7 +127,8 @@ namespace PD_Tool
{
KKdFARC.FARCFile file = farc.Files[i];
a3da.Head.Format = format;
file.Data = (choose != "1" && choose != "3") ? a3da.A3DCWriter() : a3da.A3DAWriter();
file.Data = choose[0] == '1' || choose[0] == '3'
? a3da.A3DAWriter() : a3da.A3DCWriter();
farc.Files[i] = file;
}
}
@@ -121,12 +137,12 @@ namespace PD_Tool
}
KKdA3DA[] a3daArray;
using (KKdList<KKdA3DA> a3daList = KKdList<KKdA3DA>.New)
using (KKdList<KKdA3DA> a3daList = KKdList<KKdA3DA>.NewReserve(list.Count))
{
for (int i = 0; i < list.Count; i++)
{
KKdA3DA a3da;
using (a3da = new KKdA3DA(true))
using (a3da = new KKdA3DA())
{
data = farc.FileReader(list[i]);
int state = a3da.A3DAReader(data);
@@ -139,13 +155,14 @@ namespace PD_Tool
for (int i = 0; i < list.Count; i++)
{
if (a3daArray[i].Data.PlayControl.Div == null) continue;
float Div = a3daArray[i].Data.PlayControl.Div.Value;
int div = a3daArray[i].Data.PlayControl.Div.Value;
string filename = Path.RemoveExtension(list[i]);
string ext = Path.GetExtension(list[i]).ToLower();
KKdA3DA a3da;
for (int i1 = 1; i1 < Div; i1++)
using (a3da = new KKdA3DA(true))
for (int i1 = 1; i1 < div; i1++)
using (a3da = new KKdA3DA())
{
string file = Path.GetFileNameWithoutExtension(list[i]) +
"_div_" + i1 + Path.GetExtension(list[i]);
string file = filename + "_div_" + i1 + ext;
data = farc.FileReader(file);
int state = a3da.A3DAReader(data);
if (state == 1) a3daArray[i].A3DAMerger(ref a3da.Data);
@@ -153,13 +170,15 @@ namespace PD_Tool
a3daArray[i].Data.PlayControl.Div = null;
}
farc.Files.Capacity = 0;
farc.Files.Capacity = list.Count;
for (int i = 0; i < list.Count; i++)
{
KKdFARC.FARCFile file = default;
file.Name = list[i];
a3daArray[i].Head.Format = format;
file.Data = (choose != "1" && choose != "3") ? a3daArray[i].A3DCWriter() : a3daArray[i].A3DAWriter();
file.Data = choose[0] == '1'|| choose[0] == '3'
? a3daArray[i].A3DAWriter() : a3daArray[i].A3DCWriter();
farc.Files.Add(file);
}
farc.Save();
-39
View File
@@ -1,39 +0,0 @@
using System;
using KKdMainLib;
using KKdMainLib.IO;
namespace PD_Tool
{
public class ADP
{
public static void Processor(bool json)
{
Console.Title = "Add Param Converter";
Program.Choose(1, "adp", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
AddParam adp;
foreach (string file in fileNames)
{
adp = new AddParam();
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
Console.Title = "Add Param Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".adp")
{
adp.AddParamReader(filepath);
adp. MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
{
adp. MsgPackReader(filepath, ext == ".json");
adp.AddParamWriter(filepath);
}
adp.Dispose();
}
}
}
}
+2 -3
View File
@@ -17,9 +17,8 @@ namespace PD_Tool
foreach (string file in fileNames)
using (aet = new Aet())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "AET Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin")
+36 -7
View File
@@ -1,29 +1,58 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
using KKdMainLib.IO;
namespace PD_Tool
{
public class BLT
{
public static void Processor()
public static void Processor(bool json)
{
Console.Title = "Bloom Converter";
Program.Choose(1, "blt", out string[] fileNames);
if (fileNames.Length < 1) return;
bool bloom = false;
foreach (string file in fileNames)
if (file.EndsWith(".blt")) { bloom = true; break; }
string choose = "";
if (bloom)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. JSON");
Program.ConsoleDesign("2. TXT");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
}
string filepath, ext;
Bloom blt;
foreach (string file in fileNames)
using (blt = new Bloom())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "Bloom Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".blt") { blt.BLTReader(filepath); blt.TXTWriter(filepath); }
//else if (ext == ".txt") { blt.TXTReader(filepath); blt.BLTWriter(filepath); }
if (ext == ".blt")
{
blt.BLTReader(filepath);
if (choose == "2" && !blt.IsX)
blt.TXTWriter(filepath);
else
blt.MsgPackWriter(filepath, json);
}
else if (ext == ".json" || ext == ".mp")
{
blt.MsgPackReader(filepath, json);
blt.BLTWriter(filepath);
}
}
}
}
+36 -7
View File
@@ -1,29 +1,58 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
using KKdMainLib.IO;
namespace PD_Tool
{
public class CCT
{
public static void Processor()
public static void Processor(bool json)
{
Console.Title = "Color Correction Converter";
Program.Choose(1, "cct", out string[] fileNames);
if (fileNames.Length < 1) return;
bool cc = false;
foreach (string file in fileNames)
if (file.EndsWith(".cct")) { cc = true; break; }
string choose = "";
if (cc)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. JSON");
Program.ConsoleDesign("2. TXT");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
}
string filepath, ext;
ColorCorrection cct;
foreach (string file in fileNames)
using (cct = new ColorCorrection())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "Color Correction Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".cct") { cct.CCTReader(filepath); cct.TXTWriter(filepath); }
//else if (ext == ".txt") { cct.TXTReader(filepath); cct.BLTWriter(filepath); }
if (ext == ".cct")
{
cct.CCTReader(filepath);
if (choose == "2" && !cct.IsX)
cct.TXTWriter(filepath);
else
cct.MsgPackWriter(filepath, json);
}
else if (ext == ".json" || ext == ".mp")
{
cct.MsgPackReader(filepath, json);
cct.CCTWriter(filepath);
}
}
}
}
+4 -5
View File
@@ -16,15 +16,14 @@ namespace PD_Tool
if (file.EndsWith(".mp" )) { mp = false; break; }
else if (file.EndsWith(".json")) { mp = false; break; }
uint num2 = (uint)(DateTime.Now.Ticks / 10000000);
uint timestamp = (uint)((DateTime.Now.Ticks - 621355968000000000) / 10000000);
string[] file_split;
string filepath, ext;
KKdMainLib.DataBank db;
foreach (string file in fileNames)
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
string filename = Path.GetFileNameWithoutExtension(file);
file_split = filename.Split('_');
@@ -49,7 +48,7 @@ namespace PD_Tool
{
Console.Title = "DataBank Converter: " + filename;
db.MsgPackReader(filepath, json);
db. DBWriter(filepath, num2);
db. DBWriter(filepath, timestamp);
}
}
}
+2 -3
View File
@@ -46,9 +46,8 @@ namespace PD_Tool
foreach (string file in fileNames)
using (dex = new KKdDEX())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "DEX Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin" || ext == ".dex") dex. DEXReader(filepath, ext );
+36 -7
View File
@@ -1,29 +1,58 @@
using System;
using KKdMainLib.IO;
using KKdMainLib.F2;
using KKdMainLib.IO;
namespace PD_Tool
{
public class DFT
{
public static void Processor()
public static void Processor(bool json)
{
Console.Title = "DOF Converter";
Program.Choose(1, "dft", out string[] fileNames);
if (fileNames.Length < 1) return;
bool cc = false;
foreach (string file in fileNames)
if (file.EndsWith(".dft")) { cc = true; break; }
string choose = "";
if (cc)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. JSON");
Program.ConsoleDesign("2. TXT");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
}
string filepath, ext;
DOF dft;
foreach (string file in fileNames)
using (dft = new DOF())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "DOF Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".dft") { dft.DFTReader(filepath); dft.TXTWriter(filepath); }
//else if (ext == ".txt") { dft.TXTReader(filepath); dft.DFTWriter(filepath); }
if (ext == ".dft")
{
dft.DFTReader(filepath);
if (choose == "2" && !dft.IsX)
dft.TXTWriter(filepath);
else
dft.MsgPackWriter(filepath, json);
}
else if (ext == ".json" || ext == ".mp")
{
dft.MsgPackReader(filepath, json);
dft.DFTWriter(filepath);
}
}
}
}
+3 -4
View File
@@ -1,5 +1,5 @@
using System;
using System.IO;
using KKdMainLib.IO;
using KKdSoundLib;
namespace PD_Tool
@@ -17,9 +17,8 @@ namespace PD_Tool
foreach (string file in fileNames)
{
diva = new DIVA();
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "DIVA Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".diva") diva.DIVAReader(filepath);
+2 -2
View File
@@ -13,7 +13,7 @@ namespace PD_Tool
if (head != 0x454C494641564944) return;
System.Console.Title = "DIVAFILE Decrypt: " + Path.GetFileName(file);
file.Decrypt();
KKdMainLib.DIVAFILE.Decrypt(file);
}
public static void Encrypt(string file)
@@ -24,7 +24,7 @@ namespace PD_Tool
if (head == 0x454C494641564944) return;
System.Console.Title = "DIVAFILE Encrypt: " + Path.GetFileName(file);
file.Encrypt();
KKdMainLib.DIVAFILE.Encrypt(file);
}
}
}
+28 -26
View File
@@ -1,32 +1,34 @@
using System;
using System.IO;
using Aet = KKdMainLib.DB.Aet;
using Auth = KKdMainLib.DB.Auth;
using Spr = KKdMainLib.DB.Spr;
using KKdMainLib.DB;
using KKdMainLib.IO;
namespace PD_Tool
{
public class DataBase
{
public static void Processor(bool json)
public static void Processor(bool json, char choose)
{
Console.Title = "DB Converter";
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of DataBase file:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. Auth DB Converter");
Program.ConsoleDesign("2. AET DB Converter");
Program.ConsoleDesign("3. SPR DB Converter");
Program.ConsoleDesign(false);
Program.ConsoleDesign("R. Return to Main Menu");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
string format = Console.ReadLine().ToUpper();
if (format == "1") AuthDBProcessor(json);
if (format == "2") AETDBProcessor(json);
if (format == "3") SPRDBProcessor(json);
if (choose == '\0')
{
Console.Title = "DB Converter";
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of DataBase file:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. Auth DB Converter");
Program.ConsoleDesign("2. AET DB Converter");
Program.ConsoleDesign("3. SPR DB Converter");
Program.ConsoleDesign(false);
Program.ConsoleDesign("R. Return to Main Menu");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
string format = Console.ReadLine().ToUpper();
if (format.Length > 0) choose = format[0];
}
if (choose == '1') AuthDBProcessor(json);
if (choose == '2') AETDBProcessor(json);
if (choose == '3') SPRDBProcessor(json);
}
public static void AuthDBProcessor(bool JSON)
@@ -41,8 +43,8 @@ namespace PD_Tool
using (auth = new Auth())
{
Console.Title = "Auth DB Converter: " + Path.GetFileNameWithoutExtension(file);
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
if (ext == ".bin")
{
@@ -69,8 +71,8 @@ namespace PD_Tool
using (aet = new Aet())
{
Console.Title = "AET DB Converter: " + Path.GetFileNameWithoutExtension(file);
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
if (ext == ".bin")
{
@@ -97,8 +99,8 @@ namespace PD_Tool
using (spr = new Spr())
{
Console.Title = "SPR DB Converter: " + Path.GetFileNameWithoutExtension(file);
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
filepath = file.Replace(Path.GetExtension(file), "");
if (ext == ".bin")
{
+4 -4
View File
@@ -1,5 +1,5 @@
using System;
using System.IO;
using KKdMainLib.IO;
using KKdFARC = KKdMainLib.FARC;
namespace PD_Tool
@@ -63,12 +63,12 @@ namespace PD_Tool
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
if (choose == "2" || choose == "4") farc.FARCType |= KKdFARC.Type.GZip;
if (choose == "3" || choose == "4") farc.FARCType |= KKdFARC.Type.ECB ;
if (choose == "2" || choose == "4") farc.FARCFlags |= KKdFARC.Flags.GZip;
if (choose == "3" || choose == "4") farc.FARCFlags |= KKdFARC.Flags.AES ;
}
else if (choose == "R") return;
else farc.Signature = KKdFARC.Farc.FArC;
farc.Pack(farc.Signature);
farc.Pack();
}
}
}
+35 -6
View File
@@ -6,24 +6,53 @@ namespace PD_Tool
{
public class LIT
{
public static void Processor()
public static void Processor(bool json)
{
Console.Title = "Light Converter";
Program.Choose(1, "lit", out string[] fileNames);
if (fileNames.Length < 1) return;
bool bloom = false;
foreach (string file in fileNames)
if (file.EndsWith(".lit")) { bloom = true; break; }
string choose = "";
if (bloom)
{
Console.Clear();
Program.ConsoleDesign(true);
Program.ConsoleDesign(" Choose type of format to export:");
Program.ConsoleDesign(false);
Program.ConsoleDesign("1. JSON");
Program.ConsoleDesign("2. TXT");
Program.ConsoleDesign(false);
Program.ConsoleDesign(true);
Console.WriteLine();
choose = Console.ReadLine().ToUpper();
}
string filepath, ext;
Light lit;
foreach (string file in fileNames)
using (lit = new Light())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "Light Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".lit") { lit.LITReader(filepath); lit.TXTWriter(filepath); }
//else if (ext == ".txt") { lit.TXTReader(filepath); lit.LITWriter(filepath); }
if (ext == ".lit")
{
lit.LITReader(filepath);
if (choose == "2" && !lit.IsX)
lit.TXTWriter(filepath);
else
lit.MsgPackWriter(filepath, json);
}
else if (ext == ".json" || ext == ".mp")
{
lit.MsgPackReader(filepath, json);
lit.LITWriter(filepath);
}
}
}
}
+16 -18
View File
@@ -9,31 +9,29 @@ namespace PD_Tool
public static void Processor(bool json)
{
Console.Title = "MotHead Converter";
Program.Choose(1, "bin", out string[] fileNames);
Program.Choose(1, "mhd", out string[] fileNames);
if (fileNames.Length < 1) return;
string filepath, ext;
MotHead mhd;
foreach (string file in fileNames)
{
mhd = new MotHead();
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
using (mhd = new MotHead())
{
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "MotHead Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin")
{
mhd.MotHeadReader(filepath);
mhd.MsgPackWriter(filepath, json);
Console.Title = "MotHead Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin" || ext == ".mhd")
{
mhd.MotHeadReader(filepath, ext);
mhd.MsgPackWriter(filepath, json);
}
else if (ext == ".mp" || ext == ".json")
{
mhd.MsgPackReader(filepath, ext == ".json");
mhd.MotHeadWriter(filepath);
}
}
else if (ext == ".mp" || ext == ".json")
{
mhd.MsgPackReader(filepath, ext == ".json");
mhd.MotHeadWriter(filepath);
}
mhd.Dispose();
}
}
}
}
+72
View File
@@ -24,6 +24,78 @@ namespace PD_Tool
Console.Title = "MOT Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin")
{
/*KKdBaseLib.KKdDict<int, int> a = KKdBaseLib.KKdDict<int, int>.New;
while (true)
{
string b = Console.ReadLine();
if (b == "") break;
string[] c = b.Split(' ');
if (c.Length == 2)
a.Add(int.Parse(c[0]), int.Parse(c[1]));
}
a.Add(0, 1);
a.Add(1648, 3);
a.Add(2139, 2);
a.Add(5416, 4);
a.Add(6589, 5);
a.Add(7783, 1);
mot.MOTReader(filepath);
Mot.KeySet[] oks = mot.MOT[1].KeySet.V;
Mot.MotHeader mh = mot.MOT[1];
mh.KeySet.V = new Mot.KeySet[mh.KeySet.V.Length];
Mot.KeySet[] ok = mh.KeySet.V;
for (int i = 0; i < mh.KeySet.V.Length; i++)
{
KKdBaseLib.Interpolation.PDI[] pdi = new KKdBaseLib.Interpolation.PDI[mot.MOT.Length];
for (int h = 0; h < mot.MOT.Length; h++)
pdi[h] = new KKdBaseLib.Interpolation.PDI(mot.MOT[h].KeySet.V[i].Keys);
KKdBaseLib.KKdList<KKdBaseLib.KFT2> kf = KKdBaseLib.KKdList<KKdBaseLib.KFT2>.New;
bool old = false;
KKdBaseLib.KFT2 v = default;
KKdBaseLib.KFT2 ov = default;
int k = -1;
for (int h = 0; h < mh.FrameCount; h++)
{
if (a.ContainsKey(h))
k = a[h];
else if (k == -1) continue;
ref KKdBaseLib.Interpolation.PDI pdil = ref pdi[k];
v.F = h;
v.V = pdil.SetFrame(h);
if (h == 0 || ov.V != v.V)
{
if (old) { old = false; kf.Add(ov); }
kf.Add(v);
}
else old = true;
ov = v;
}
kf.Capacity = kf.Count;
ok[i].Keys = kf.ToArray();
ok[i].Type = Mot.KeySetType.Linear;
for (int h = 0; h < mot.MOT.Length; h++)
pdi[h] = default;
}
for (int i = 0; i < mh.KeySet.V.Length; i++)
{
if (ok[i].Keys.Length != 1) continue;
if (ok[i].Keys[0].V == 0)
{
ok[i].Keys[0].F = 0;
ok[i].Type = Mot.KeySetType.None;
}
else ok[i].Type = Mot.KeySetType.Static;
}
mot.MOT[1].KeySet.V = ok;
Array.Resize(ref mot.MOT, 2);
mot.MOTWriter(filepath + "_mod");*/
mot. MOTReader(filepath);
mot.MsgPackWriter(filepath, json);
}
+3 -4
View File
@@ -16,14 +16,13 @@ namespace PD_Tool
foreach (string file in fileNames)
using (str = new KKdSTR())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "STR Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".str" || ext == ".bin")
{
str.STRReader (filepath, ext);
str.STRReader (filepath, ext);
str.MsgPackWriter(filepath, json);
}
else if (ext == ".json" || ext == ".mp")
+3 -4
View File
@@ -1,7 +1,7 @@
using System;
using System.IO;
using KKdBaseLib;
using KKdMainLib;
using KKdMainLib.IO;
using KKdFARC = KKdMainLib.FARC;
namespace PD_Tool
@@ -19,9 +19,8 @@ namespace PD_Tool
foreach (string file in fileNames)
using (tbl = new Tables())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "Table Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".bin")
+3 -4
View File
@@ -1,5 +1,5 @@
using System;
using System.IO;
using KKdMainLib.IO;
using KKdVAG = KKdSoundLib.VAG;
namespace PD_Tool
@@ -42,9 +42,8 @@ namespace PD_Tool
foreach (string file in fileNames)
using (VAG = new KKdVAG())
{
ext = Path.GetExtension(file);
filepath = file.Replace(ext, "");
ext = ext.ToLower();
filepath = Path.RemoveExtension(file);
ext = Path.GetExtension(file).ToLower();
Console.Title = "VAG Converter: " + Path.GetFileNameWithoutExtension(file);
if (ext == ".vag") { VAG.VAGReader(filepath); VAG.WAVWriter(filepath ); }
+3 -4
View File
@@ -2,8 +2,7 @@
A simple tool for working with Project Diva AC/DT/F/AFT/F2/X/FT/M39 files
# Dependencies:
+ `.NET Standard 2.0`: Required to build KKdBaseLib, KKdMainLib and KKdSoundLib C# projects.
+ `.NET Framework 4.6.1`: Required to run/build PD_Tool C# project.
+ `.NET Framework 4.6.1`: Required to build KKdBaseLib, KKdMainLib and KKdSoundLib C# projects and to run/build PD_Tool C# project.
# Tools:
- `FARC Extract/Create`
@@ -20,8 +19,8 @@ A simple tool for working with Project Diva AC/DT/F/AFT/F2/X/FT/M39 files
- `DIVA Converter`
- `MotHead Converter`
- `MOT Converter`
- `Table Converter`
- `STR Converter`
- `Table Converter`
- `F/F2/FT Converting Tools`
- `A3DA Converter`
- `Bloom Converter`
@@ -43,5 +42,5 @@ A simple tool for working with Project Diva AC/DT/F/AFT/F2/X/FT/M39 files
- `DIVA Converter`
- `MotHead Converter`
- `MOT Converter`
- `Table Converter`
- `STR Converter`
- `Table Converter`